• High Power Laser Science and Engineering
  • Vol. 12, Issue 3, 03000e26 (2024)
Ziyang Peng1, Zhengxuan Cao1,2, Xuan Liu1, Yinren Shou3..., Jiarui Zhao1, Shiyou Chen1, Ying Gao1, Pengjie Wang4, Zhusong Mei1, Zhuo Pan1, Defeng Kong1, Shirui Xu1, Zhipeng Liu1, Yulan Liang1, Tianqi Xu1, Tan Song1, Xun Chen1, Qingfan Wu1, Yujia Zhang1, Zihao Zhang1, Xueqin Yan1,5,6 and Wenjun Ma1,5,6,*|Show fewer author(s)
Author Affiliations
  • 1State Key Laboratory of Nuclear Physics and Technology, School of Physics, Peking University, Beijing, China
  • 2National Key Laboratory of Shock Wave and Detonation Physics, Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang, China
  • 3Center for Relativistic Laser Science, Institute for Basic Science, Gwangju, Republic of Korea
  • 4Institute of Radiation Physics, Helmholtz-Zentrum Dresden Rossendorf, Dresden, Germany
  • 5Beijing Laser Acceleration Innovation Center, Beijing, China
  • 6Institute of Guangdong Laser Plasma Technology, Guangzhou, China
  • show less
    DOI: 10.1017/hpl.2023.101 Cite this Article Set citation alerts
    Ziyang Peng, Zhengxuan Cao, Xuan Liu, Yinren Shou, Jiarui Zhao, Shiyou Chen, Ying Gao, Pengjie Wang, Zhusong Mei, Zhuo Pan, Defeng Kong, Shirui Xu, Zhipeng Liu, Yulan Liang, Tianqi Xu, Tan Song, Xun Chen, Qingfan Wu, Yujia Zhang, Zihao Zhang, Xueqin Yan, Wenjun Ma, "A comprehensive diagnostic system of ultra-thin liquid sheet targets," High Power Laser Sci. Eng. 12, 03000e26 (2024) Copy Citation Text show less
    References

    [1] A. Higginson, R. Gray, M. King, R. Dance, S. Williamson, N. Butler, R. Wilson, R. Capdessus, C. Armstrong, J. Green. Nat. Commun., 9, 724(2018).

    [2] P. Wang, Z. Gong, S. G. Lee, Y. Shou, Y. Geng, C. Jeon, I. J. Kim, H. W. Lee, J. W. Yoon, J. H. Sung. Phys. Rev. X, 021049(2021).

    [3] H. Daido, M. Nishiuchi, A. S. Pirozhkov. Rep. Prog. Phys., 75, 056401(2012).

    [4] M.-C. Vozenin, J. Bourhis, M. Durante. Nat. Rev. Clin. Oncol., 19, 791(2022).

    [5] W. Ma, V. K. Liechtenstein, J. Szerypo, D. Jung, P. Hilz, B. Hegelich, H. Maier, J. Schreiber, D. Habs. Nucl. Instrum. Methods Phys. Res. A, 655, 53(2011).

    [6] W. Ma, I. J. Kim, J. Yu, I. W. Choi, P. Singh, H. W. Lee, J. H. Sung, S. K. Lee, C. Lin, Q. Liao. Phys. Rev. Lett., 122, 014803(2019).

    [7] Y. Shou, P. Wang, S. G. Lee, Y. J. Rhee, H. W. Lee, J. W. Yoon, J. H. Sung, S. K. Lee, Z. Pan, D. Kong. Nat. Photonics, 17, 137(2023).

    [8] M. Ehret, J. I. Apiñaniz, J. L. Henares, R. Lera, D. de Luis, J. A. Pérez-Hernández, L. Volpe, G. Gatti. Nucl. Instrum. Methods Phys. Res. B, 541, 165(2023).

    [9] K. George, J. Morrison, S. Feister, G. Ngirmang, J. Smith, A. Klim, J. Snyder, D. Austin, W. Erbsen, K. Frische. High Power Laser Sci. Eng., 7, e50(2019).

    [10] J. T. Morrison, S. Feister, K. D. Frische, D. R. Austin, G. K. Ngirmang, N. R. Murphy, C. Orban, E. A. Chowdhury, W. Roquemore. New J. Phys., 20, 022001(2018).

    [11] P. Puyuelo-Valdes, D. de Luis, J. Hernandez, J. Apiñaniz, A. Curcio, J. Henares, M. Huault, J. Pérez-Hernández, L. Roso, G. Gatti. Plasma Phys. Control Fusion, 64, 054003(2022).

    [12] M. Rehwald, S. Assenbaum, C. Bernert, F.-E. Brack, M. Bussmann, T. E. Cowan, C. B. Curry, F. Fiuza, M. Garten, L. Gaus. Nat. Commun., 14, 4009(2023).

    [13] F. Treffert, C. Curry, H.-G. Chou, C. Crissman, D. DePonte, F. Fiuza, G. Glenn, R. Hollinger, R. Nedbailo, J. Park. Appl. Phys. Lett., 074104(2022).

    [14] Z. Cao, Z. Peng, Y. Shou, J. Zhao, S. Chen, Y. Gao, J. Liu, P. Wang, Z. Mei, Z. Pan. Front. Phys., 11, 231(2023).

    [15] W. Ma, Z. Liu, P. Wang, J. Zhao, X. Yan. Acta Phys. Sin., 70, 084102(2021).

    [16] R. Li, N. Ashgriz. Phys. Fluids, 18, 087104(2006).

    [17] M. Born, E. Wolf. Principles of Optics: Electromagnetic Theory of Propagation, Interference and Diffraction of Light(2013).

    [18] A. Watanabe, H. Saito, Y. Ishida, M. Nakamoto, T. Yajima. Opt. Commun., 71, 301(1989).

    [19] J. W. Bush, A. E. Hasha. J. Fluid Mech., 511, 285(2004).

    [20] M. Panao, J. Delgado. Phys. Fluids, 25, 012105(2013).

    [21] S. Kashanj, A. Kebriaee. Chem. Eng. Sci., 206, 235(2019).

    [22] G. Galinis, J. Strucka, J. C. Barnard, A. Braun, R. A. Smith, J. P. Marangos. Rev. Sci. Instrum., 88, 083117(2017).

    [23] J. D. Koralek, J. B. Kim, P. Brůža, C. B. Curry, Z. Chen, H. A. Bechtel, A. A. Cordones, P. Sperling, S. Toleikis, J. F. Kern. Nat. Commun., 9, 1353(2018).

    [24] S. Menzi, G. Knopp, A. Al Haddad, S. Augustin, C. Borca, D. Gashi, T. Huthwelker, D. James, J. Jin, G. Pamfilidis. Rev. Sci. Instrum., 105109(2020).

    [25] D. J. Hoffman, T. B. Van Driel, T. Kroll, C. J. Crissman, E. S. Ryland, K. J. Nelson, A. A. Cordones, J. D. Koralek, D. P. DePonte. Front. Mol. Biosci., 9, 1048932(2022).

    [26] C. J. Crissman, M. Mo, Z. Chen, J. Yang, D. A. Huyke, S. H. Glenzer, K. Ledbetter, J. P. F. Nunes, M. L. Ng, H. Wang. Lab Chip., 22, 1365(2022).

    [27] J. C. Barnard, J. P. Lee, O. Alexander, S. Jarosch, D. Garratt, R. Picciuto, K. Kowalczyk, C. Ferchaud, A. Gregory, M. Matthews. Front. Mol. Biosci., 9, 1044610(2022).

    [28] R. M. Goldstein, H. A. Zebker, C. L. Werner. Radio Sci., 23, 713(1988).

    [29] H. S. Abdul-Rahman, M. A. Gdeisat, D. R. Burton, M. J. Lalor, F. Lilley, C. J. Moore. Appl. Opt., 46, 6623(2007).

    [30] M. Chen, A. Pukhov, T. Yu, Z. Sheng. Phys. Rev. Lett., 103, 024801(2009).

    [31] D. Hasson, R. E. Peck. AIChE J., 10, 752(1964).

    [32] R. Snavely, M. Key, S. Hatchett, T. Cowan, M. Roth, T. Phillips, M. Stoyer, E. Henry, T. Sangster, M. Singh. Phys. Rev. Let., 85, 2945(2000).

    [33] J. Zhu, M. Wu, Q. Liao, Y. Geng, K. Zhu, C. Li, X. Xu, D. Li, Y. Shou, T. Yang. Phys. Rev. Accel. Beams, 22, 061302(2019).

    [34] Z.-H. Loh, G. Doumy, C. Arnold, L. Kjellsson, S. Southworth, A. Al Haddad, Y. Kumagai, M.-F. Tu, P. Ho, A. March. Science, 367, 179(2020).

    [35] J. Yang, R. Dettori, J. P. F. Nunes, N. H. List, E. Biasin, M. Centurion, Z. Chen, A. A. Cordones, D. P. Deponte, T. F. Heinz. Nature, 596, 531(2021).

    [36] M.-F. Lin, N. Singh, S. Liang, M. Mo, J. Nunes, K. Ledbetter, J. Yang, M. Kozina, S. Weathersby, X. Shen. Science, 374, 92(2021).

    [37] Y. E, L. Zhang, A. Tsypkin, S. Kozlov, C. Zhang, X.-C. Zhang. J. Opt. Soc. Am. B, 39, A43(2022).

    [38] C.-L. Xia, Z.-L. Li, J.-Q. Liu, A.-W. Zeng, L.-J. Lü, X.-B. Bian. Phys. Rev. A, 105, 013115(2022).

    [39] P. Poole, C. Andereck, D. Schumacher, R. Daskalova, S. Feister, K. George, C. Willis, K. Akli, E. Chowdhury. Phys. Plasmas, 063109(2014).

    [40] Y. Shou, D. Wang, P. Wang, J. Liu, Z. Cao, Z. Mei, Y. Geng, J. Zhu, Q. Liao, Y. Zhao. Nucl. Instrum. Methods Phys. Res. A, 927, 236(2019).

    Ziyang Peng, Zhengxuan Cao, Xuan Liu, Yinren Shou, Jiarui Zhao, Shiyou Chen, Ying Gao, Pengjie Wang, Zhusong Mei, Zhuo Pan, Defeng Kong, Shirui Xu, Zhipeng Liu, Yulan Liang, Tianqi Xu, Tan Song, Xun Chen, Qingfan Wu, Yujia Zhang, Zihao Zhang, Xueqin Yan, Wenjun Ma, "A comprehensive diagnostic system of ultra-thin liquid sheet targets," High Power Laser Sci. Eng. 12, 03000e26 (2024)
    Download Citation