• Acta Photonica Sinica
  • Vol. 52, Issue 9, 0932001 (2023)
Han WEN1、2, Peng XU1, Liangwen PI1、*, and Yuxi FU1、*
Author Affiliations
  • 1State Key Laboratory of Transient Optics and Photonic Technology,Xi'an Institute of Optics and Fine Mechanics,Chinese Academy of Sciences,Xi'an 710119,China
  • 2School of Optoelectronics,University of Chinese Academy of Sciences,Beijing 101408,China
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    DOI: 10.3788/gzxb20235209.0932001 Cite this Article
    Han WEN, Peng XU, Liangwen PI, Yuxi FU. Generation of Femtosecond Magnetic Pulses by Circularly Polarized Vortex Laser-driven Plasma[J]. Acta Photonica Sinica, 2023, 52(9): 0932001 Copy Citation Text show less
    References

    [1] Tao PENG, Liang LI. The status and future development of pulsed high magnetic fields. Physics, 45, 11-18(2016).

    [2] L X HU, T P YU, Y LU et al. Dynamics of the interaction of relativistic Laguerre-Gaussian laser pulses with a wire target. Plasma Physics and Controlled Fusion, 61, 025009-025027(2019).

    [3] Y SHI, J VIEIRA, R M G M TRINES et al. Magnetic field generation in plasma waves driven by copropagating intense twisted lasers. Physical Review Letters, 121, 145002-145009(2018).

    [4] R NUTER, P KORNEEV, I THIELE et al. Plasma solenoid driven by a laser beam carrying an orbital angular momentum. Physical Review E, 98, 033211-033220(2018).

    [5] Y CHEN, C XU, B XU et al. Chirality-activated mechanoluminescence from aggregation-induced emission enantiomers with high contrast mechanochromism and force-induced delayed fluorescence. Materials Chemistry Frontiers, 3, 1800-1806(2019).

    [6] M R FREEMAN, M J BRADY, J SMYTH. Extremely high frequency pulse magnetic resonance by picosecond magneto-optic sampling. Applied Physics Letters, 60, 2555-2557(1992).

    [7] U D KEIL, D R DYKAAR. Ultrafast pulse generation in photoconductive switches. IEEE Journal of Quantum Electronics, 32, 1664-1671(1996).

    [8] V FLOVIK, A QAIUMZADEH, A K NANDY et al. Generation of single skyrmions by picosecond magnetic field pulses. Physical Review B, 96, 140411-140421(2017).

    [9] C HEO, N S KISELEV, A K NANDY et al. Switching of chiral magnetic skyrmions by picosecond magnetic field pulses via transient topological states. Scientific Reports, 6, 27146-27157(2016).

    [10] L WINTER, S GROßENBACH, U NOWAK et al. Nutational switching in ferromagnets and antiferromagnets. Physical Review B, 106, 214403-214415(2022).

    [11] M AESCHLIMANN, M BAUER, S PAWLIK et al. Ultrafast spin-dependent electron dynamics in fcc Co. Physical Review Letters, 79, 5158-5161(1997).

    [12] J WIECZOREK, A ESCHENLOHR, B WEIDTMANN et al. Separation of ultrafast spin currents and spin-flip scattering in Co/Cu(001) driven by femtosecond laser excitation employing the complex magneto-optical Kerr effect. Physical Review B, 92, 174410-174418(2015).

    [13] A MELNIKOV, I RAZDOLSKI, T O WEHLING et al. Ultrafast transport of laser-excited spin-polarized carriers in Au/Fe/MgO (001). Physical Review Letters, 107, 076601-076606(2011).

    [14] M Y ZHURAVLEV, E Y TSYMBAL, S S JASWAL. Exchange model for oscillatory interlayer coupling and induced unidirectional anisotropy in [Pt/Co]3/NiO[Pt/Co]3 multilayers. Physical Review Letters, 92, 219703-219705(2004).

    [15] Z Y LIU, S ADENWALLA. Oscillatory interlayer exchange coupling and its temperature dependence in [Pt/Co]3/NiO/[Co/Pt]3 multilayers with perpendicular anisotropy. Physical Review Letters, 91, 037207-037215(2003).

    [16] O HELLWIG, A BERGER, E E FULLERTON. Domain walls in antiferromagnetically coupled multilayer films. Physical Review Letters, 91, 197203-197207(2003).

    [17] J DEROUILLAT, A BECK, F PÉREZ et al. Smilei: a collaborative, open-source, multi-purpose particle-in-cell code for plasma simulation. Computer Physics Communications, 222, 351-405(2018).

    [18] T D ARBER, K BENNETT, C S BRADY et al. Contemporary particle-in-cell approach to laser-plasma modelling. Plasma Physics and Controlled Fusion, 57, 113001-113028(2015).

    [19] C BAUMANN, A PUKHOV. Electron dynamics in twisted light modes of relativistic intensity. Physics of Plasmas, 25, 083114-083122(2018).

    [20] Xiaoyu WENG, Hanming GUO, Xiangmei DONG et al. Focusing characteristics of Laguerre-Gaussian radially polarized beam through high numerical aperture. Acta Photonica Sinica, 40, 798-802(2011).

    [21] Yepeng ZHOU, Hongliang REN, Juan WANG et al. Comparative analysis of the trapping force using Laguerre Gaussian beam and Gaussian beam. Acta Photonica Sinica, 42, 1300-1304(2013).

    [22] Hongxian ZHANG, Heng ZHAO. Orbital angular momentum of high-order elliptical Hermite-Gaussian beams. Acta Photonica Sinica, 37, 125-128(2008).

    [23] L W PI, S X HU, A F STARACE. Favorable target positions for intense laser acceleration of electrons in hydrogen-like, highly-charged ions. Physics of Plasmas, 22, 093111-093123(2015).

    [24] Mengxue GUAN, Daqiang CHEN, Shiqi HU et al. Theoretical insights into ultrafast dynamics in quantum materials. Ultrafast Science, 9767251(2021).

    [25] Q KONG, S MIYAZAKI, S KAWATA et al. Electron bunch trapping and compression by an intense focused pulse laser. Physical Review E, 69, 056502-056513(2004).

    Han WEN, Peng XU, Liangwen PI, Yuxi FU. Generation of Femtosecond Magnetic Pulses by Circularly Polarized Vortex Laser-driven Plasma[J]. Acta Photonica Sinica, 2023, 52(9): 0932001
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