• Matter and Radiation at Extremes
  • Vol. 8, Issue 6, 064002 (2023)
Feng Wan1, Chong Lv2, Kun Xue1, Zhen-Ke Dou1..., Qian Zhao1, Mamutjan Ababekri1, Wen-Qing Wei1, Zhong-Peng Li1, Yong-Tao Zhao1 and Jian-Xing Li1,a)|Show fewer author(s)
Author Affiliations
  • 1Ministry of Education Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, Shaanxi Province Key Laboratory of Quantum Information and Quantum Optoelectronic Devices, School of Physics, Xi’an Jiaotong University, Xi’an 710049, China
  • 2Department of Nuclear Physics, China Institute of Atomic Energy, P.O. Box 275(7), Beijing 102413, China
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    DOI: 10.1063/5.0163929 Cite this Article
    Feng Wan, Chong Lv, Kun Xue, Zhen-Ke Dou, Qian Zhao, Mamutjan Ababekri, Wen-Qing Wei, Zhong-Peng Li, Yong-Tao Zhao, Jian-Xing Li. Simulations of spin/polarization-resolved laser–plasma interactions in the nonlinear QED regime[J]. Matter and Radiation at Extremes, 2023, 8(6): 064002 Copy Citation Text show less
    References

    [1] A.Di Piazza, Piazza A.Di, C.Müller, Z.Hatsagortsyan K., C. and, C.Müller, Piazza A.Di, C.Müller, Z.Hatsagortsyan K., C. and, K. Z.Hatsagortsyan, Piazza A.Di, C.Müller, Z.Hatsagortsyan K., C. and, C. H.Keitel. Extremely high-intensity laser interactions with fundamental quantum systems. Rev. Mod. Phys., 84, 1177-1228(2012).

    [2] A. R.Bell, R.Bell A., J. G.Kirk. Possibility of prolific pair production with high-power lasers. Phys. Rev. Lett., 101, 200403(2008).

    [3] A. J.Gonsalves, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, K.Nakamura, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, J.Daniels, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, C.Benedetti, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, C.Pieronek, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, T. C. H.de Raadt, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, S.Steinke, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, J. H.Bin, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, S. S.Bulanov, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, J.van Tilborg, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, C. G. R.Geddes, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, C. B.Schroeder, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, C.Tóth, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, E.Esarey, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, K.Swanson, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, L.Fan-Chiang, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, G.Bagdasarov, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, N.Bobrova, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, V.Gasilov, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, G.Korn, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, P.Sasorov, J.Gonsalves A., K.Nakamura, J.Daniels, C.Benedetti, C.Pieronek, C. T., S.Steinke, H.Bin J., S.Bulanov S., Tilborg J.van, G. C., B.Schroeder C., C.Tóth, E.Esarey, K.Swanson, L.Fan-Chiang, G.Bagdasarov, N.Bobrova, V.Gasilov, G.Korn, P.Sasorov, W. and, W. P.Leemans. Petawatt laser guiding and electron beam acceleration to 8 GeV in a laser-heated capillary discharge waveguide. Phys. Rev. Lett., 122, 084801(2019).

    [4] E.Esarey, E.Esarey, B.Schroeder C., W. and, C. B.Schroeder, E.Esarey, B.Schroeder C., W. and, W. P.Leemans. Physics of laser-driven plasma-based electron accelerators. Rev. Mod. Phys., 81, 1229-1285(2009).

    [5] V. I.Ritus. Quantum effects of the interaction of elementary particles with an intense electromagnetic field. J. Russ. Laser Res., 6, 497-617(1985).

    [6] V. N.Baier, N.Baier V., M.Katkov V., V. and, V. M.Katkov, N.Baier V., M.Katkov V., V. and, V. M.Strakhovenko. Electromagnetic Processes at High Energies in Oriented Single Crystals(1998).

    [7] J. D.Jackson. Classical Electrodynamics(2021).

    [8] I. M.Ternov, M.Ternov I., A. A.Sokolov. Radiation from Relativistic Electrons(1986).

    [9] D.Del Sorbo, Sorbo D.Del, D.Seipt, G.Blackburn T., G. A., D.Murphy C., G.Kirk J., C. and, D.Seipt, Sorbo D.Del, D.Seipt, G.Blackburn T., G. A., D.Murphy C., G.Kirk J., C. and, T. G.Blackburn, Sorbo D.Del, D.Seipt, G.Blackburn T., G. A., D.Murphy C., G.Kirk J., C. and, A. G. R.Thomas, Sorbo D.Del, D.Seipt, G.Blackburn T., G. A., D.Murphy C., G.Kirk J., C. and, C. D.Murphy, Sorbo D.Del, D.Seipt, G.Blackburn T., G. A., D.Murphy C., G.Kirk J., C. and, J. G.Kirk, Sorbo D.Del, D.Seipt, G.Blackburn T., G. A., D.Murphy C., G.Kirk J., C. and, C. P.Ridgers. Spin polarization of electrons by ultraintense lasers. Phys. Rev. A, 96, 043407(2017).

    [10] Y.-F.Li, Y.-F.Li, R.Shaisultanov, Z.Hatsagortsyan K., F.Wan, H.Keitel C., J.-X.Li and, R.Shaisultanov, Y.-F.Li, R.Shaisultanov, Z.Hatsagortsyan K., F.Wan, H.Keitel C., J.-X.Li and, K. Z.Hatsagortsyan, Y.-F.Li, R.Shaisultanov, Z.Hatsagortsyan K., F.Wan, H.Keitel C., J.-X.Li and, F.Wan, Y.-F.Li, R.Shaisultanov, Z.Hatsagortsyan K., F.Wan, H.Keitel C., J.-X.Li and, C. H.Keitel, Y.-F.Li, R.Shaisultanov, Z.Hatsagortsyan K., F.Wan, H.Keitel C., J.-X.Li and, J.-X.Li. Ultrarelativistic electron-beam polarization in single-shot interaction with an ultraintense laser pulse. Phys. Rev. Lett., 122, 154801(2019).

    [11] B.King, and B.King, S.Tang. Nonlinear Compton scattering of polarized photons in plane-wave backgrounds. Phys. Rev. A, 102, 022809(2020).

    [12] Y.-F.Li, Y.-F.Li, R.Shaisultanov, Y.-Y.Chen, F.Wan, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, R.Shaisultanov, Y.-F.Li, R.Shaisultanov, Y.-Y.Chen, F.Wan, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, Y.-Y.Chen, Y.-F.Li, R.Shaisultanov, Y.-Y.Chen, F.Wan, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, F.Wan, Y.-F.Li, R.Shaisultanov, Y.-Y.Chen, F.Wan, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, K. Z.Hatsagortsyan, Y.-F.Li, R.Shaisultanov, Y.-Y.Chen, F.Wan, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, C. H.Keitel, Y.-F.Li, R.Shaisultanov, Y.-Y.Chen, F.Wan, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, J.-X.Li. Polarized ultrashort brilliant multi-GeV γ-rays via single-shot laser–electron interaction. Phys. Rev. Lett., 124, 014801(2020).

    [13] Z.Gong, Z.Gong, Z.Hatsagortsyan K., C. and, K. Z.Hatsagortsyan, Z.Gong, Z.Hatsagortsyan K., C. and, C. H.Keitel. Retrieving transient magnetic fields of ultrarelativistic laser plasma via ejected electron polarization. Phys. Rev. Lett., 127, 165002(2021).

    [14] F.Wan, F.Wan, Y.Wang, R.-T.Guo, Y.-Y.Chen, R.Shaisultanov, Z.-F.Xu, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, Y.Wang, F.Wan, Y.Wang, R.-T.Guo, Y.-Y.Chen, R.Shaisultanov, Z.-F.Xu, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, R.-T.Guo, F.Wan, Y.Wang, R.-T.Guo, Y.-Y.Chen, R.Shaisultanov, Z.-F.Xu, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, Y.-Y.Chen, F.Wan, Y.Wang, R.-T.Guo, Y.-Y.Chen, R.Shaisultanov, Z.-F.Xu, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, R.Shaisultanov, F.Wan, Y.Wang, R.-T.Guo, Y.-Y.Chen, R.Shaisultanov, Z.-F.Xu, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, Z.-F.Xu, F.Wan, Y.Wang, R.-T.Guo, Y.-Y.Chen, R.Shaisultanov, Z.-F.Xu, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, K. Z.Hatsagortsyan, F.Wan, Y.Wang, R.-T.Guo, Y.-Y.Chen, R.Shaisultanov, Z.-F.Xu, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, C. H.Keitel, F.Wan, Y.Wang, R.-T.Guo, Y.-Y.Chen, R.Shaisultanov, Z.-F.Xu, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, J.-X.Li. High-energy γ-photon polarization in nonlinear Breit–Wheeler pair production and γ polarimetry. Phys. Rev. Res., 2, 032049(2020).

    [15] K.Xue, K.Xue, Z.-K.Dou, F.Wan, T.-P.Yu, W.-M.Wang, J.-R.Ren, Q.Zhao, Y.-T.Zhao, Z.-F.Xu, J.-X.Li and, Z.-K.Dou, K.Xue, Z.-K.Dou, F.Wan, T.-P.Yu, W.-M.Wang, J.-R.Ren, Q.Zhao, Y.-T.Zhao, Z.-F.Xu, J.-X.Li and, F.Wan, K.Xue, Z.-K.Dou, F.Wan, T.-P.Yu, W.-M.Wang, J.-R.Ren, Q.Zhao, Y.-T.Zhao, Z.-F.Xu, J.-X.Li and, T.-P.Yu, K.Xue, Z.-K.Dou, F.Wan, T.-P.Yu, W.-M.Wang, J.-R.Ren, Q.Zhao, Y.-T.Zhao, Z.-F.Xu, J.-X.Li and, W.-M.Wang, K.Xue, Z.-K.Dou, F.Wan, T.-P.Yu, W.-M.Wang, J.-R.Ren, Q.Zhao, Y.-T.Zhao, Z.-F.Xu, J.-X.Li and, J.-R.Ren, K.Xue, Z.-K.Dou, F.Wan, T.-P.Yu, W.-M.Wang, J.-R.Ren, Q.Zhao, Y.-T.Zhao, Z.-F.Xu, J.-X.Li and, Q.Zhao, K.Xue, Z.-K.Dou, F.Wan, T.-P.Yu, W.-M.Wang, J.-R.Ren, Q.Zhao, Y.-T.Zhao, Z.-F.Xu, J.-X.Li and, Y.-T.Zhao, K.Xue, Z.-K.Dou, F.Wan, T.-P.Yu, W.-M.Wang, J.-R.Ren, Q.Zhao, Y.-T.Zhao, Z.-F.Xu, J.-X.Li and, Z.-F.Xu, K.Xue, Z.-K.Dou, F.Wan, T.-P.Yu, W.-M.Wang, J.-R.Ren, Q.Zhao, Y.-T.Zhao, Z.-F.Xu, J.-X.Li and, J.-X.Li. Generation of highly-polarized high-energy brilliant γ-rays via laser–plasma interaction. Matter Radiat. Extremes, 5, 054402(2020).

    [16] S.Tang, S.Tang, B.King, H.Hu and, B.King, S.Tang, B.King, H.Hu and, H.Hu. Highly polarised gamma photons from electron-laser collisions. Phys. Lett. B, 809, 135701(2020).

    [17] H.-H.Song, H.-H.Song, W.-M.Wang, Y.-T.Li and, W.-M.Wang, H.-H.Song, W.-M.Wang, Y.-T.Li and, Y.-T.Li. Dense polarized positrons from laser-irradiated foil targets in the QED regime. Phys. Rev. Lett., 129, 035001(2022).

    [18] T. D.Arber, D.Arber T., K.Bennett, S.Brady C., A.Lawrence-Douglas, G.Ramsay M., J.Sircombe N., P.Gillies, G.Evans R., H.Schmitz, R.Bell A., C. and, K.Bennett, D.Arber T., K.Bennett, S.Brady C., A.Lawrence-Douglas, G.Ramsay M., J.Sircombe N., P.Gillies, G.Evans R., H.Schmitz, R.Bell A., C. and, C. S.Brady, D.Arber T., K.Bennett, S.Brady C., A.Lawrence-Douglas, G.Ramsay M., J.Sircombe N., P.Gillies, G.Evans R., H.Schmitz, R.Bell A., C. and, A.Lawrence-Douglas, D.Arber T., K.Bennett, S.Brady C., A.Lawrence-Douglas, G.Ramsay M., J.Sircombe N., P.Gillies, G.Evans R., H.Schmitz, R.Bell A., C. and, M. G.Ramsay, D.Arber T., K.Bennett, S.Brady C., A.Lawrence-Douglas, G.Ramsay M., J.Sircombe N., P.Gillies, G.Evans R., H.Schmitz, R.Bell A., C. and, N. J.Sircombe, D.Arber T., K.Bennett, S.Brady C., A.Lawrence-Douglas, G.Ramsay M., J.Sircombe N., P.Gillies, G.Evans R., H.Schmitz, R.Bell A., C. and, P.Gillies, D.Arber T., K.Bennett, S.Brady C., A.Lawrence-Douglas, G.Ramsay M., J.Sircombe N., P.Gillies, G.Evans R., H.Schmitz, R.Bell A., C. and, R. G.Evans, D.Arber T., K.Bennett, S.Brady C., A.Lawrence-Douglas, G.Ramsay M., J.Sircombe N., P.Gillies, G.Evans R., H.Schmitz, R.Bell A., C. and, H.Schmitz, D.Arber T., K.Bennett, S.Brady C., A.Lawrence-Douglas, G.Ramsay M., J.Sircombe N., P.Gillies, G.Evans R., H.Schmitz, R.Bell A., C. and, A. R.Bell, D.Arber T., K.Bennett, S.Brady C., A.Lawrence-Douglas, G.Ramsay M., J.Sircombe N., P.Gillies, G.Evans R., H.Schmitz, R.Bell A., C. and, C. P.Ridgers. Contemporary particle-in-cell approach to laser–plasma modelling. Plasma Phys. Controlled Fusion, 57, 113001(2015).

    [19] C.Birdsall, and C.Birdsall, A.Langdon. Plasma Physics via Computer Simulation(2018).

    [20] A.Gonoskov, A.Gonoskov, S.Bastrakov, E.Efimenko, A.Ilderton, M.Marklund, I.Meyerov, A.Muraviev, A.Sergeev, I.Surmin, E.Wallin and, S.Bastrakov, A.Gonoskov, S.Bastrakov, E.Efimenko, A.Ilderton, M.Marklund, I.Meyerov, A.Muraviev, A.Sergeev, I.Surmin, E.Wallin and, E.Efimenko, A.Gonoskov, S.Bastrakov, E.Efimenko, A.Ilderton, M.Marklund, I.Meyerov, A.Muraviev, A.Sergeev, I.Surmin, E.Wallin and, A.Ilderton, A.Gonoskov, S.Bastrakov, E.Efimenko, A.Ilderton, M.Marklund, I.Meyerov, A.Muraviev, A.Sergeev, I.Surmin, E.Wallin and, M.Marklund, A.Gonoskov, S.Bastrakov, E.Efimenko, A.Ilderton, M.Marklund, I.Meyerov, A.Muraviev, A.Sergeev, I.Surmin, E.Wallin and, I.Meyerov, A.Gonoskov, S.Bastrakov, E.Efimenko, A.Ilderton, M.Marklund, I.Meyerov, A.Muraviev, A.Sergeev, I.Surmin, E.Wallin and, A.Muraviev, A.Gonoskov, S.Bastrakov, E.Efimenko, A.Ilderton, M.Marklund, I.Meyerov, A.Muraviev, A.Sergeev, I.Surmin, E.Wallin and, A.Sergeev, A.Gonoskov, S.Bastrakov, E.Efimenko, A.Ilderton, M.Marklund, I.Meyerov, A.Muraviev, A.Sergeev, I.Surmin, E.Wallin and, I.Surmin, A.Gonoskov, S.Bastrakov, E.Efimenko, A.Ilderton, M.Marklund, I.Meyerov, A.Muraviev, A.Sergeev, I.Surmin, E.Wallin and, E.Wallin. Extended particle-in-cell schemes for physics in ultrastrong laser fields: Review and developments. Phys. Rev. E, 92, 023305(2015).

    [21] R. A.Fonseca, P. M. A.Sloot, M. P., A.Fonseca R., G.Hoekstra A., O.Silva L., J. C., S.Tsung F., J. and, K.Decyk V., A. G.Hoekstra, W.Lu, C.Ren, M. P., G.Hoekstra A., B.Mori W., J. C., S.Deng, J. and, S.Lee, T.Katsouleas, C. J. K.Tan, J. and, M. P., G.Hoekstra A., L. O.Silva, J. C., A.Fonseca R., J. and, O.Silva L., J. J.Dongarra, S.Tsung F., K.Decyk V., W.Lu, C.Ren, B.Mori W., S.Deng, S.Lee, T.Katsouleas, J. and, F. S.Tsung, A.Fonseca R., O.Silva L., S.Tsung F., K.Decyk V., W.Lu, C.Ren, B.Mori W., S.Deng, S.Lee, T.Katsouleas, J. and, V. K.Decyk, A.Fonseca R., O.Silva L., S.Tsung F., K.Decyk V., W.Lu, C.Ren, B.Mori W., S.Deng, S.Lee, T.Katsouleas, J. and, W.Lu, A.Fonseca R., O.Silva L., S.Tsung F., K.Decyk V., W.Lu, C.Ren, B.Mori W., S.Deng, S.Lee, T.Katsouleas, J. and, C.Ren, A.Fonseca R., O.Silva L., S.Tsung F., K.Decyk V., W.Lu, C.Ren, B.Mori W., S.Deng, S.Lee, T.Katsouleas, J. and, W. B.Mori, A.Fonseca R., O.Silva L., S.Tsung F., K.Decyk V., W.Lu, C.Ren, B.Mori W., S.Deng, S.Lee, T.Katsouleas, J. and, S.Deng, A.Fonseca R., O.Silva L., S.Tsung F., K.Decyk V., W.Lu, C.Ren, B.Mori W., S.Deng, S.Lee, T.Katsouleas, J. and, S.Lee, A.Fonseca R., O.Silva L., S.Tsung F., K.Decyk V., W.Lu, C.Ren, B.Mori W., S.Deng, S.Lee, T.Katsouleas, J. and, T.Katsouleas, A.Fonseca R., O.Silva L., S.Tsung F., K.Decyk V., W.Lu, C.Ren, B.Mori W., S.Deng, S.Lee, T.Katsouleas, J. and, J. C.Adam. OSIRIS: A three-dimensional, fully relativistic particle in cell code for modeling plasma based accelerators. Computational Science—ICCS 2002, 342-351(2002).

    [22] H.Burau, H.Burau, R.Widera, W.H?nig, G.Juckeland, A.Debus, T.Kluge, U.Schramm, E.Cowan T., R.Sauerbrey, M.Bussmann and, R.Widera, H.Burau, R.Widera, W.H?nig, G.Juckeland, A.Debus, T.Kluge, U.Schramm, E.Cowan T., R.Sauerbrey, M.Bussmann and, W.H?nig, H.Burau, R.Widera, W.H?nig, G.Juckeland, A.Debus, T.Kluge, U.Schramm, E.Cowan T., R.Sauerbrey, M.Bussmann and, G.Juckeland, H.Burau, R.Widera, W.H?nig, G.Juckeland, A.Debus, T.Kluge, U.Schramm, E.Cowan T., R.Sauerbrey, M.Bussmann and, A.Debus, H.Burau, R.Widera, W.H?nig, G.Juckeland, A.Debus, T.Kluge, U.Schramm, E.Cowan T., R.Sauerbrey, M.Bussmann and, T.Kluge, H.Burau, R.Widera, W.H?nig, G.Juckeland, A.Debus, T.Kluge, U.Schramm, E.Cowan T., R.Sauerbrey, M.Bussmann and, U.Schramm, H.Burau, R.Widera, W.H?nig, G.Juckeland, A.Debus, T.Kluge, U.Schramm, E.Cowan T., R.Sauerbrey, M.Bussmann and, T. E.Cowan, H.Burau, R.Widera, W.H?nig, G.Juckeland, A.Debus, T.Kluge, U.Schramm, E.Cowan T., R.Sauerbrey, M.Bussmann and, R.Sauerbrey, H.Burau, R.Widera, W.H?nig, G.Juckeland, A.Debus, T.Kluge, U.Schramm, E.Cowan T., R.Sauerbrey, M.Bussmann and, M.Bussmann. PIConGPU: A fully relativistic particle-in-cell code for a GPU cluster. IEEE Trans. Plasma Sci., 38, 2831-2839(2010).

    [23] J.Derouillat, J.Derouillat, A.Beck, F.Pérez, T.Vinci, M.Chiaramello, A.Grassi, M.Flé, G.Bouchard, I.Plotnikov, N.Aunai, J.Dargent, C.Riconda, M.Grech and, A.Beck, J.Derouillat, A.Beck, F.Pérez, T.Vinci, M.Chiaramello, A.Grassi, M.Flé, G.Bouchard, I.Plotnikov, N.Aunai, J.Dargent, C.Riconda, M.Grech and, F.Pérez, J.Derouillat, A.Beck, F.Pérez, T.Vinci, M.Chiaramello, A.Grassi, M.Flé, G.Bouchard, I.Plotnikov, N.Aunai, J.Dargent, C.Riconda, M.Grech and, T.Vinci, J.Derouillat, A.Beck, F.Pérez, T.Vinci, M.Chiaramello, A.Grassi, M.Flé, G.Bouchard, I.Plotnikov, N.Aunai, J.Dargent, C.Riconda, M.Grech and, M.Chiaramello, J.Derouillat, A.Beck, F.Pérez, T.Vinci, M.Chiaramello, A.Grassi, M.Flé, G.Bouchard, I.Plotnikov, N.Aunai, J.Dargent, C.Riconda, M.Grech and, A.Grassi, J.Derouillat, A.Beck, F.Pérez, T.Vinci, M.Chiaramello, A.Grassi, M.Flé, G.Bouchard, I.Plotnikov, N.Aunai, J.Dargent, C.Riconda, M.Grech and, M.Flé, J.Derouillat, A.Beck, F.Pérez, T.Vinci, M.Chiaramello, A.Grassi, M.Flé, G.Bouchard, I.Plotnikov, N.Aunai, J.Dargent, C.Riconda, M.Grech and, G.Bouchard, J.Derouillat, A.Beck, F.Pérez, T.Vinci, M.Chiaramello, A.Grassi, M.Flé, G.Bouchard, I.Plotnikov, N.Aunai, J.Dargent, C.Riconda, M.Grech and, I.Plotnikov, J.Derouillat, A.Beck, F.Pérez, T.Vinci, M.Chiaramello, A.Grassi, M.Flé, G.Bouchard, I.Plotnikov, N.Aunai, J.Dargent, C.Riconda, M.Grech and, N.Aunai, J.Derouillat, A.Beck, F.Pérez, T.Vinci, M.Chiaramello, A.Grassi, M.Flé, G.Bouchard, I.Plotnikov, N.Aunai, J.Dargent, C.Riconda, M.Grech and, J.Dargent, J.Derouillat, A.Beck, F.Pérez, T.Vinci, M.Chiaramello, A.Grassi, M.Flé, G.Bouchard, I.Plotnikov, N.Aunai, J.Dargent, C.Riconda, M.Grech and, C.Riconda, J.Derouillat, A.Beck, F.Pérez, T.Vinci, M.Chiaramello, A.Grassi, M.Flé, G.Bouchard, I.Plotnikov, N.Aunai, J.Dargent, C.Riconda, M.Grech and, M.Grech. Smilei: A collaborative, open-source, multi-purpose particle-in-cell code for plasma simulation. Comput. Phys. Commun., 222, 351-373(2018).

    [24] D.Wu, D.Wu, W.Yu, S.Fritzsche, X. and, W.Yu, D.Wu, W.Yu, S.Fritzsche, X. and, S.Fritzsche, D.Wu, W.Yu, S.Fritzsche, X. and, X. T.He. Particle-in-cell simulation method for macroscopic degenerate plasmas. Phys. Rev. E, 102, 033312(2020).

    [25] Y.-F.Li, Y.-F.Li, Y.-Y.Chen, Z.Hatsagortsyan K., C. and, Y.-Y.Chen, Y.-F.Li, Y.-Y.Chen, Z.Hatsagortsyan K., C. and, K. Z.Hatsagortsyan, Y.-F.Li, Y.-Y.Chen, Z.Hatsagortsyan K., C. and, C. H.Keitel. Helicity transfer in strong laser fields via the electron anomalous magnetic moment. Phys. Rev. Lett., 128, 174801(2022).

    [26] C.Danson, C.Danson, D.Hillier, N.Hopps, D.Neely and, D.Hillier, C.Danson, D.Hillier, N.Hopps, D.Neely and, N.Hopps, C.Danson, D.Hillier, N.Hopps, D.Neely and, D.Neely. Petawatt class lasers worldwide. High Power Laser Sci. Eng., 3, e3(2015).

    [27]

    [28] J.Zou, J.Zou, Blanc C.Le, D.Papadopoulos, G.Chériaux, P.Georges, G.Mennerat, F.Druon, L.Lecherbourg, A.Pellegrina, P.Ramirezet?al., C.Le Blanc, J.Zou, Blanc C.Le, D.Papadopoulos, G.Chériaux, P.Georges, G.Mennerat, F.Druon, L.Lecherbourg, A.Pellegrina, P.Ramirezet?al., D.Papadopoulos, J.Zou, Blanc C.Le, D.Papadopoulos, G.Chériaux, P.Georges, G.Mennerat, F.Druon, L.Lecherbourg, A.Pellegrina, P.Ramirezet?al., G.Chériaux, J.Zou, Blanc C.Le, D.Papadopoulos, G.Chériaux, P.Georges, G.Mennerat, F.Druon, L.Lecherbourg, A.Pellegrina, P.Ramirezet?al., P.Georges, J.Zou, Blanc C.Le, D.Papadopoulos, G.Chériaux, P.Georges, G.Mennerat, F.Druon, L.Lecherbourg, A.Pellegrina, P.Ramirezet?al., G.Mennerat, J.Zou, Blanc C.Le, D.Papadopoulos, G.Chériaux, P.Georges, G.Mennerat, F.Druon, L.Lecherbourg, A.Pellegrina, P.Ramirezet?al., F.Druon, J.Zou, Blanc C.Le, D.Papadopoulos, G.Chériaux, P.Georges, G.Mennerat, F.Druon, L.Lecherbourg, A.Pellegrina, P.Ramirezet?al., L.Lecherbourg, J.Zou, Blanc C.Le, D.Papadopoulos, G.Chériaux, P.Georges, G.Mennerat, F.Druon, L.Lecherbourg, A.Pellegrina, P.Ramirezet?al., A.Pellegrina, J.Zou, Blanc C.Le, D.Papadopoulos, G.Chériaux, P.Georges, G.Mennerat, F.Druon, L.Lecherbourg, A.Pellegrina, P.Ramirezet?al., P.Ramirezet?al.. Design and current progress of the Apollon 10 PW project. High Power Laser Sci. Eng., 3, e2(2015).

    [29]

    [30] Z.Gan, K.Yamanouchi, K.Yamanouchi, Z.Gan, K.Midorikawa, L.Yu, L.Roso and, C.Wang, K.Midorikawa, Y.Liu, K.Yamanouchi, Y.Xu, K.Midorikawa, W.Li, L.Roso and, S.Li, L.Yu, L.Roso, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, L.Yu, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, C.Wang, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, Y.Liu, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, Y.Xu, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, W.Li, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, S.Li, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, L.Yu, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, X.Wang, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, X.Liu, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, J.Chen, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, Y.Peng, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, L.Xu, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, B.Yao, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, X.Zhang, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, L.Chen, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, Y.Tang, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, X.Wang, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, D.Yin, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, X.Liang, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, Y.Leng, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, R.Li, Z.Gan, L.Yu, C.Wang, Y.Liu, Y.Xu, W.Li, S.Li, L.Yu, X.Wang, X.Liu, J.Chen, Y.Peng, L.Xu, B.Yao, X.Zhang, L.Chen, Y.Tang, X.Wang, D.Yin, X.Liang, Y.Leng, R.Li, Z.Xu and, Z.Xu. The Shanghai superintense ultrafast laser facility (SULF) project. Progress in Ultrafast Intense Laser Science XVI, 199-217(2021).

    [31] O.Buneman. Time-reversible difference procedures. J. Comput. Phys., 1, 517-535(1967).

    [32] J. P.Boris, P.Boris J., R. A.Shanny(1970).

    [33] H.Qin, H.Qin, S.Zhang, J.Xiao, J.Liu, Y.Sun, W. and, S.Zhang, H.Qin, S.Zhang, J.Xiao, J.Liu, Y.Sun, W. and, J.Xiao, H.Qin, S.Zhang, J.Xiao, J.Liu, Y.Sun, W. and, J.Liu, H.Qin, S.Zhang, J.Xiao, J.Liu, Y.Sun, W. and, Y.Sun, H.Qin, S.Zhang, J.Xiao, J.Liu, Y.Sun, W. and, W. M.Tang. Why is Boris algorithm so good?. Phys. Plasmas, 20, 084503(2013).

    [34] Y.Kane. Numerical solution of initial boundary value problems involving Maxwell’s equations in isotropic media. IEEE Trans. Antennas Propag., 14, 302-307(1966).

    [35] T.Esirkepov. Exact charge conservation scheme for particle-in-cell simulation with an arbitrary form-factor. Comput. Phys. Commun., 135, 144-153(2001).

    [36] P. A. M.Dirac. Classical theory of radiating electrons. Proc. R. Soc. London, Ser. A, 167, 148-169(1938).

    [37] L. D.Landau, D.Landau L., E.Lifshitz. The Classical Theory of Fields(1999).

    [38] R.Ekman, R.Ekman, T.Heinzl, A.Ilderton and, T.Heinzl, R.Ekman, T.Heinzl, A.Ilderton and, A.Ilderton. Reduction of order, resummation, and radiation reaction. Phys. Rev. D, 104, 036002(2021).

    [39] R.Ekman. Reduction of order and transseries structure of radiation reaction. Phys. Rev. D, 105, 056016(2022).

    [40] A.Ilderton, and A.Ilderton, G.Torgrimsson. Radiation reaction in strong field QED. Phys. Lett. B, 725, 481-486(2013).

    [41] D.Seipt, and D.Seipt, A. G. R.Thomas. Kinetic theory for spin-polarized relativistic plasmas(2023).

    [42] N.Neitz, and N.Neitz, A.Di Piazza. Electron-beam dynamics in a strong laser field including quantum radiation reaction. Phys. Rev. A, 90, 022102(2014).

    [43] M.Tamburini, M.Tamburini, F.Pegoraro, Piazza A.Di, H.Keitel C., A.Macchi and, F.Pegoraro, M.Tamburini, F.Pegoraro, Piazza A.Di, H.Keitel C., A.Macchi and, A.Di Piazza, M.Tamburini, F.Pegoraro, Piazza A.Di, H.Keitel C., A.Macchi and, C. H.Keitel, M.Tamburini, F.Pegoraro, Piazza A.Di, H.Keitel C., A.Macchi and, A.Macchi. Radiation reaction effects on radiation pressure acceleration. New J. Phys., 12, 123005(2010).

    [44] S. V.Bulanov, J.Hein, J.Hein, V.Bulanov S., G.Korn, Z.Esirkepov T., L. and, M.Kando, K.Koga J., G.Korn, J.Hein, T.Nakamura, G.Korn, S.Bulanov S., G.Zhidkov A., L. and, L. O.Silva, Y.Kato, G.Korn and, T. Z.Esirkepov, V.Bulanov S., Z.Esirkepov T., M.Kando, K.Koga J., T.Nakamura, S.Bulanov S., G.Zhidkov A., Y.Kato, G.Korn and, M.Kando, V.Bulanov S., Z.Esirkepov T., M.Kando, K.Koga J., T.Nakamura, S.Bulanov S., G.Zhidkov A., Y.Kato, G.Korn and, J. K.Koga, V.Bulanov S., Z.Esirkepov T., M.Kando, K.Koga J., T.Nakamura, S.Bulanov S., G.Zhidkov A., Y.Kato, G.Korn and, T.Nakamura, V.Bulanov S., Z.Esirkepov T., M.Kando, K.Koga J., T.Nakamura, S.Bulanov S., G.Zhidkov A., Y.Kato, G.Korn and, S. S.Bulanov, V.Bulanov S., Z.Esirkepov T., M.Kando, K.Koga J., T.Nakamura, S.Bulanov S., G.Zhidkov A., Y.Kato, G.Korn and, A. G.Zhidkov, V.Bulanov S., Z.Esirkepov T., M.Kando, K.Koga J., T.Nakamura, S.Bulanov S., G.Zhidkov A., Y.Kato, G.Korn and, Y.Kato, V.Bulanov S., Z.Esirkepov T., M.Kando, K.Koga J., T.Nakamura, S.Bulanov S., G.Zhidkov A., Y.Kato, G.Korn and, G.Korn. On extreme field limits in high power laser matter interactions: Radiation dominant regimes in high intensity electromagnetic wave interaction with electrons. High-Power, High-Energy, and High-Intensity Laser Technology; and Research Using Extreme Light: Entering New Frontiers with Petawatt-Class Lasers(2013).

    [45] A. I.Nikishov, I.Nikishov A., V. I.Ritus. Quantum processes in the field of a plane electromagnetic wave and in a constant field. Sov. Phys. JETP, 19, 529-541(1964).

    [46] I. V.Sokolov, V.Sokolov I., M.Naumova N., A.Nees J., A.Mourou G., V. and, N. M.Naumova, V.Sokolov I., M.Naumova N., A.Nees J., A.Mourou G., V. and, J. A.Nees, V.Sokolov I., M.Naumova N., A.Nees J., A.Mourou G., V. and, G. A.Mourou, V.Sokolov I., M.Naumova N., A.Nees J., A.Mourou G., V. and, V. P.Yanovsky. Dynamics of emitting electrons in strong laser fields. Phys. Plasmas, 16, 093115(2009).

    [47] A.Di Piazza, Piazza A.Di, Z.Hatsagortsyan K., C. and, K. Z.Hatsagortsyan, Piazza A.Di, Z.Hatsagortsyan K., C. and, C. H.Keitel. Quantum radiation reaction effects in multiphoton Compton scattering. Phys. Rev. Lett., 105, 220403(2010).

    [48] A. G. R.Thomas, G. A., P.Ridgers C., S.Bulanov S., J.Griffin B., S. and, C. P.Ridgers, G. A., P.Ridgers C., S.Bulanov S., J.Griffin B., S. and, S. S.Bulanov, G. A., P.Ridgers C., S.Bulanov S., J.Griffin B., S. and, B. J.Griffin, G. A., P.Ridgers C., S.Bulanov S., J.Griffin B., S. and, S. P. D.Mangles. Strong radiation-damping effects in a gamma-ray source generated by the interaction of a high-intensity laser with a wakefield-accelerated electron beam. Phys. Rev. X, 2, 041004(2012).

    [49] I. V.Sokolov, V.Sokolov I., A.Nees J., P.Yanovsky V., M.Naumova N., G. and, J. A.Nees, V.Sokolov I., A.Nees J., P.Yanovsky V., M.Naumova N., G. and, V. P.Yanovsky, V.Sokolov I., A.Nees J., P.Yanovsky V., M.Naumova N., G. and, N. M.Naumova, V.Sokolov I., A.Nees J., P.Yanovsky V., M.Naumova N., G. and, G. A.Mourou. Emission and its back-reaction accompanying electron motion in relativistically strong and QED-strong pulsed laser fields. Phys. Rev. E, 81, 036412(2010).

    [50] F.Niel, F.Niel, C.Riconda, F.Amiranoff, R.Duclous, M.Grech and, C.Riconda, F.Niel, C.Riconda, F.Amiranoff, R.Duclous, M.Grech and, F.Amiranoff, F.Niel, C.Riconda, F.Amiranoff, R.Duclous, M.Grech and, R.Duclous, F.Niel, C.Riconda, F.Amiranoff, R.Duclous, M.Grech and, M.Grech. From quantum to classical modeling of radiation reaction: A focus on stochasticity effects. Phys. Rev. E, 97, 043209(2018).

    [51] H. K.Avetissian. Relativistic Nonlinear Electrodynamics: The QED Vacuum and Matter in Super-Strong Radiation Fields, 88(2015).

    [52] A. D.Piazza. Exact solution of the Landau–Lifshitz equation in a plane wave. Lett. Math. Phys., 83, 305-313(2008).

    [53] S. X.Hu, X.Hu S., C. H.Keitel. Spin signatures in intense laser–ion interaction. Phys. Rev. Lett., 83, 4709-4712(1999).

    [54] M. W.Walser, W.Walser M., J.Urbach D., Z.Hatsagortsyan K., X.Hu S., C. and, D. J.Urbach, W.Walser M., J.Urbach D., Z.Hatsagortsyan K., X.Hu S., C. and, K. Z.Hatsagortsyan, W.Walser M., J.Urbach D., Z.Hatsagortsyan K., X.Hu S., C. and, S. X.Hu, W.Walser M., J.Urbach D., Z.Hatsagortsyan K., X.Hu S., C. and, C. H.Keitel. Spin and radiation in intense laser fields. Phys. Rev. A, 65, 043410(2002).

    [55] G. R.Mocken, R.Mocken G., C. H.Keitel. FFT-split-operator code for solving the Dirac equation in 2 + 1 dimensions. Comput. Phys. Commun., 178, 868-882(2008).

    [56] H.Bauke, H.Bauke, S.Ahrens, H.Keitel C., R.Grobe and, S.Ahrens, H.Bauke, S.Ahrens, H.Keitel C., R.Grobe and, C. H.Keitel, H.Bauke, S.Ahrens, H.Keitel C., R.Grobe and, R.Grobe. Relativistic spin operators in various electromagnetic environments. Phys. Rev. A, 89, 052101(2014).

    [57] M.Wen, M.Wen, H.Keitel C., H.Bauke and, C. H.Keitel, M.Wen, H.Keitel C., H.Bauke and, H.Bauke. Spin-one-half particles in strong electromagnetic fields: Spin effects and radiation reaction. Phys. Rev. A, 95, 042102(2017).

    [58] V. N.Ba?er. Radiative polarization of electron in storage rings. Sov. Phys.-Usp., 14, 695-714(1972).

    [59] R.-T.Guo, R.-T.Guo, Y.Wang, R.Shaisultanov, F.Wan, Z.-F.Xu, Y.-Y.Chen, Z.Hatsagortsyan K., J.-X.Li and, Y.Wang, R.-T.Guo, Y.Wang, R.Shaisultanov, F.Wan, Z.-F.Xu, Y.-Y.Chen, Z.Hatsagortsyan K., J.-X.Li and, R.Shaisultanov, R.-T.Guo, Y.Wang, R.Shaisultanov, F.Wan, Z.-F.Xu, Y.-Y.Chen, Z.Hatsagortsyan K., J.-X.Li and, F.Wan, R.-T.Guo, Y.Wang, R.Shaisultanov, F.Wan, Z.-F.Xu, Y.-Y.Chen, Z.Hatsagortsyan K., J.-X.Li and, Z.-F.Xu, R.-T.Guo, Y.Wang, R.Shaisultanov, F.Wan, Z.-F.Xu, Y.-Y.Chen, Z.Hatsagortsyan K., J.-X.Li and, Y.-Y.Chen, R.-T.Guo, Y.Wang, R.Shaisultanov, F.Wan, Z.-F.Xu, Y.-Y.Chen, Z.Hatsagortsyan K., J.-X.Li and, K. Z.Hatsagortsyan, R.-T.Guo, Y.Wang, R.Shaisultanov, F.Wan, Z.-F.Xu, Y.-Y.Chen, Z.Hatsagortsyan K., J.-X.Li and, J.-X.Li. Stochasticity in radiative polarization of ultrarelativistic electrons in an ultrastrong laser pulse. Phys. Rev. Res., 2, 033483(2020).

    [60] J. G.Kirk, G.Kirk J., R.Bell A., I.Arka and, A. R.Bell, G.Kirk J., R.Bell A., I.Arka and, I.Arka. Pair production in counter-propagating laser beams. Plasma Phys. Controlled Fusion, 51, 085008(2009).

    [61] C.Ridgers, C.Ridgers, J.Kirk, R.Duclous, T.Blackburn, C.Brady, K.Bennett, T.Arber, A.Bell and, J.Kirk, C.Ridgers, J.Kirk, R.Duclous, T.Blackburn, C.Brady, K.Bennett, T.Arber, A.Bell and, R.Duclous, C.Ridgers, J.Kirk, R.Duclous, T.Blackburn, C.Brady, K.Bennett, T.Arber, A.Bell and, T.Blackburn, C.Ridgers, J.Kirk, R.Duclous, T.Blackburn, C.Brady, K.Bennett, T.Arber, A.Bell and, C.Brady, C.Ridgers, J.Kirk, R.Duclous, T.Blackburn, C.Brady, K.Bennett, T.Arber, A.Bell and, K.Bennett, C.Ridgers, J.Kirk, R.Duclous, T.Blackburn, C.Brady, K.Bennett, T.Arber, A.Bell and, T.Arber, C.Ridgers, J.Kirk, R.Duclous, T.Blackburn, C.Brady, K.Bennett, T.Arber, A.Bell and, A.Bell. Modelling gamma-ray photon emission and pair production in high-intensity laser–matter interactions. J. Comput. Phys., 260, 273-285(2014).

    [62] W.-Y.Liu, W.-Y.Liu, K.Xue, F.Wan, M.Chen, J.-X.Li, F.Liu, S.-M.Weng, Z.-M.Sheng, J.Zhang and, K.Xue, W.-Y.Liu, K.Xue, F.Wan, M.Chen, J.-X.Li, F.Liu, S.-M.Weng, Z.-M.Sheng, J.Zhang and, F.Wan, W.-Y.Liu, K.Xue, F.Wan, M.Chen, J.-X.Li, F.Liu, S.-M.Weng, Z.-M.Sheng, J.Zhang and, M.Chen, W.-Y.Liu, K.Xue, F.Wan, M.Chen, J.-X.Li, F.Liu, S.-M.Weng, Z.-M.Sheng, J.Zhang and, J.-X.Li, W.-Y.Liu, K.Xue, F.Wan, M.Chen, J.-X.Li, F.Liu, S.-M.Weng, Z.-M.Sheng, J.Zhang and, F.Liu, W.-Y.Liu, K.Xue, F.Wan, M.Chen, J.-X.Li, F.Liu, S.-M.Weng, Z.-M.Sheng, J.Zhang and, S.-M.Weng, W.-Y.Liu, K.Xue, F.Wan, M.Chen, J.-X.Li, F.Liu, S.-M.Weng, Z.-M.Sheng, J.Zhang and, Z.-M.Sheng, W.-Y.Liu, K.Xue, F.Wan, M.Chen, J.-X.Li, F.Liu, S.-M.Weng, Z.-M.Sheng, J.Zhang and, J.Zhang. Trapping and acceleration of spin-polarized positrons from γ photon splitting in wakefields. Phys. Rev. Res., 4, l022028(2022).

    [63] D.Green, and D.Green, C.Harvey. SIMLA: Simulating particle dynamics in intense laser and other electromagnetic fields via classical and quantum electrodynamics. Comput. Phys. Commun., 192, 313-321(2015).

    [64] F.Wan, F.Wan, R.Shaisultanov, Y.-F.Li, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, R.Shaisultanov, F.Wan, R.Shaisultanov, Y.-F.Li, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, Y.-F.Li, F.Wan, R.Shaisultanov, Y.-F.Li, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, K. Z.Hatsagortsyan, F.Wan, R.Shaisultanov, Y.-F.Li, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, C. H.Keitel, F.Wan, R.Shaisultanov, Y.-F.Li, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, J.-X.Li. Ultrarelativistic polarized positron jets via collision of electron and ultraintense laser beams. Phys. Lett. B, 800, 135120(2020).

    [65] V. I., and V.I.Ritus, A. I.. Quantum Electrodynamics of Phenomena in a Strong Field. Trudy Fiz. Inst. Akad. Nauk SSSR, 111(1979).

    [66] K.Yokoyaet?al.. Cain, version 2.42(2011).

    [67] V. B.Berestetskii, B.Berestetskii V., M.Lifshitz E., L. and, E. M.Lifshitz, B.Berestetskii V., M.Lifshitz E., L. and, L. P.Pitaevskii. Quantum Electrodynamics: Volume 4, 4(1982).

    [68] T. N.Wistisen, N.Wistisen T., U. I.Uggerh?j. Vacuum birefringence by Compton backscattering through a strong field. Phys. Rev. D, 88, 053009(2013).

    [69] S.Bragin, S.Bragin, S.Meuren, H.Keitel C., A.Di and, S.Meuren, S.Bragin, S.Meuren, H.Keitel C., A.Di and, C. H.Keitel, S.Bragin, S.Meuren, H.Keitel C., A.Di and, A.Di Piazza. High-energy vacuum birefringence and dichroism in an ultrastrong laser field. Phys. Rev. Lett., 119, 250403(2017).

    [70] Y.-Y.Chen, Y.-Y.Chen, P.-L.He, R.Shaisultanov, Z.Hatsagortsyan K., C. and, P.-L.He, Y.-Y.Chen, P.-L.He, R.Shaisultanov, Z.Hatsagortsyan K., C. and, R.Shaisultanov, Y.-Y.Chen, P.-L.He, R.Shaisultanov, Z.Hatsagortsyan K., C. and, K. Z.Hatsagortsyan, Y.-Y.Chen, P.-L.He, R.Shaisultanov, Z.Hatsagortsyan K., C. and, C. H.Keitel. Polarized positron beams via intense two-color laser pulses. Phys. Rev. Lett., 123, 174801(2019).

    [71] Y.-Y.Chen, Y.-Y.Chen, Z.Hatsagortsyan K., H.Keitel C., R.Shaisultanov and, K. Z.Hatsagortsyan, Y.-Y.Chen, Z.Hatsagortsyan K., H.Keitel C., R.Shaisultanov and, C. H.Keitel, Y.-Y.Chen, Z.Hatsagortsyan K., H.Keitel C., R.Shaisultanov and, R.Shaisultanov. Electron spin- and photon polarization-resolved probabilities of strong-field QED processes. Phys. Rev. D, 105, 116013(2022).

    [72] K.Xue, K.Xue, R.-T.Guo, F.Wan, R.Shaisultanov, Y.-Y.Chen, Z.-F.Xu, X.-G.Ren, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, R.-T.Guo, K.Xue, R.-T.Guo, F.Wan, R.Shaisultanov, Y.-Y.Chen, Z.-F.Xu, X.-G.Ren, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, F.Wan, K.Xue, R.-T.Guo, F.Wan, R.Shaisultanov, Y.-Y.Chen, Z.-F.Xu, X.-G.Ren, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, R.Shaisultanov, K.Xue, R.-T.Guo, F.Wan, R.Shaisultanov, Y.-Y.Chen, Z.-F.Xu, X.-G.Ren, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, Y.-Y.Chen, K.Xue, R.-T.Guo, F.Wan, R.Shaisultanov, Y.-Y.Chen, Z.-F.Xu, X.-G.Ren, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, Z.-F.Xu, K.Xue, R.-T.Guo, F.Wan, R.Shaisultanov, Y.-Y.Chen, Z.-F.Xu, X.-G.Ren, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, X.-G.Ren, K.Xue, R.-T.Guo, F.Wan, R.Shaisultanov, Y.-Y.Chen, Z.-F.Xu, X.-G.Ren, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, K. Z.Hatsagortsyan, K.Xue, R.-T.Guo, F.Wan, R.Shaisultanov, Y.-Y.Chen, Z.-F.Xu, X.-G.Ren, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, C. H.Keitel, K.Xue, R.-T.Guo, F.Wan, R.Shaisultanov, Y.-Y.Chen, Z.-F.Xu, X.-G.Ren, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, J.-X.Li. Generation of arbitrarily polarized GeV lepton beams via nonlinear Breit–Wheeler process. Fundam. Res., 2, 539-545(2022).

    [73] F.Wan, F.Wan, C.Lv, M.Jia, H.Sang, B.Xie and, C.Lv, F.Wan, C.Lv, M.Jia, H.Sang, B.Xie and, M.Jia, F.Wan, C.Lv, M.Jia, H.Sang, B.Xie and, H.Sang, F.Wan, C.Lv, M.Jia, H.Sang, B.Xie and, B.Xie. Photon emission by bremsstrahlung and nonlinear Compton scattering in the interaction of ultraintense laser with plasmas. Eur. Phys. J. D, 71, 236(2017).

    [74] S.Agostinelli, S.Agostinelli, J.Allison, K.Amako, J.Apostolakiset?al., J.Allison, S.Agostinelli, J.Allison, K.Amako, J.Apostolakiset?al., K.Amako, S.Agostinelli, J.Allison, K.Amako, J.Apostolakiset?al., J.Apostolakiset?al.. Geant4—A simulation toolkit. Nucl. Instrum. Methods Phys. Res., Sect. A, 506, 250-303(2003).

    [75] Y.-S.Tsai. Pair production and bremsstrahlung of charged leptons. Rev. Mod. Phys., 46, 815-851(1974).

    [76] NEA, “PENELOPE. A code system for Monte Carlo simulation of electron and photon transport(2018).

    [77] S. M.Seltzer, M.Seltzer S., M. J.Berger. Bremsstrahlung energy spectra from electrons with kinetic energy 1 keV–10 GeV incident on screened nuclei and orbital electrons of neutral atoms with Z = 1–100. At. Data Nucl. Data Tables, 35, 345-418(1986).

    [78] L.Kim, L.Kim, H.Pratt R., M.Seltzer S., M. and, R. H.Pratt, L.Kim, H.Pratt R., M.Seltzer S., M. and, S. M.Seltzer, L.Kim, H.Pratt R., M.Seltzer S., M. and, M. J.Berger. Ratio of positron to electron bremsstrahlung energy loss: An approximate scaling law. Phys. Rev. A, 33, 3002-3009(1986).

    [79] G. M.Shore. Superluminality and UV completion. Nucl. Phys. B, 778, 219-258(2007).

    [80] F.Karbstein. Photon polarization tensor in a homogeneous magnetic or electric field. Phys. Rev. D, 88, 085033(2013).

    [81] V.Dinu, V.Dinu, T.Heinzl, A.Ilderton, M.Marklund, G.Torgrimsson and, T.Heinzl, V.Dinu, T.Heinzl, A.Ilderton, M.Marklund, G.Torgrimsson and, A.Ilderton, V.Dinu, T.Heinzl, A.Ilderton, M.Marklund, G.Torgrimsson and, M.Marklund, V.Dinu, T.Heinzl, A.Ilderton, M.Marklund, G.Torgrimsson and, G.Torgrimsson. Vacuum refractive indices and helicity flip in strong-field QED. Phys. Rev. D, 89, 125003(2014).

    [82] F.Wan, F.Wan, T.Sun, B.-F.Shen, C.Lv, Q.Zhao, M.Ababekri, Y.-T.Zhao, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, T.Sun, F.Wan, T.Sun, B.-F.Shen, C.Lv, Q.Zhao, M.Ababekri, Y.-T.Zhao, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, B.-F.Shen, F.Wan, T.Sun, B.-F.Shen, C.Lv, Q.Zhao, M.Ababekri, Y.-T.Zhao, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, C.Lv, F.Wan, T.Sun, B.-F.Shen, C.Lv, Q.Zhao, M.Ababekri, Y.-T.Zhao, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, Q.Zhao, F.Wan, T.Sun, B.-F.Shen, C.Lv, Q.Zhao, M.Ababekri, Y.-T.Zhao, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, M.Ababekri, F.Wan, T.Sun, B.-F.Shen, C.Lv, Q.Zhao, M.Ababekri, Y.-T.Zhao, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, Y.-T.Zhao, F.Wan, T.Sun, B.-F.Shen, C.Lv, Q.Zhao, M.Ababekri, Y.-T.Zhao, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, K. Z.Hatsagortsyan, F.Wan, T.Sun, B.-F.Shen, C.Lv, Q.Zhao, M.Ababekri, Y.-T.Zhao, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, C. H.Keitel, F.Wan, T.Sun, B.-F.Shen, C.Lv, Q.Zhao, M.Ababekri, Y.-T.Zhao, Z.Hatsagortsyan K., H.Keitel C., J.-X.Li and, J.-X.Li. Enhanced signature of vacuum birefringence in a plasma wakefield(2022).

    [83] C.Sanderson, and C.Sanderson, R.Curtin. Armadillo: A template-based C++ library for linear algebra. J. Open Source Softw., 1, 26(2016).

    [84] C.Sanderson, and C.Sanderson, R.Curtin. A user friendly hybrid sparse matrix class in C++. Mathematical Software—ICMS 2018, 422-430(2018).

    [85]

    [86] C. P.Ridgers, P.Ridgers C., S.Brady C., R.Duclous, G.Kirk J., K.Bennett, D.Arber T., P. A., A. and, C. S.Brady, P.Ridgers C., S.Brady C., R.Duclous, G.Kirk J., K.Bennett, D.Arber T., P. A., A. and, R.Duclous, P.Ridgers C., S.Brady C., R.Duclous, G.Kirk J., K.Bennett, D.Arber T., P. A., A. and, J. G.Kirk, P.Ridgers C., S.Brady C., R.Duclous, G.Kirk J., K.Bennett, D.Arber T., P. A., A. and, K.Bennett, P.Ridgers C., S.Brady C., R.Duclous, G.Kirk J., K.Bennett, D.Arber T., P. A., A. and, T. D.Arber, P.Ridgers C., S.Brady C., R.Duclous, G.Kirk J., K.Bennett, D.Arber T., P. A., A. and, A. P. L.Robinson, P.Ridgers C., S.Brady C., R.Duclous, G.Kirk J., K.Bennett, D.Arber T., P. A., A. and, A. R.Bell. Dense electron–positron plasmas and ultraintense γ rays from laser-irradiated solids. Phys. Rev. Lett., 108, 165006(2012).

    Feng Wan, Chong Lv, Kun Xue, Zhen-Ke Dou, Qian Zhao, Mamutjan Ababekri, Wen-Qing Wei, Zhong-Peng Li, Yong-Tao Zhao, Jian-Xing Li. Simulations of spin/polarization-resolved laser–plasma interactions in the nonlinear QED regime[J]. Matter and Radiation at Extremes, 2023, 8(6): 064002
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