• Acta Optica Sinica
  • Vol. 32, Issue 7, 714001 (2012)
Zou Debin*, Zhuo Hongbin, Shao Fuqiu, Ma Yanyun, Yin Yan, Ouyang Jianming, Yu Tongpu, and Yang Xiaohu
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/aos201232.0714001 Cite this Article Set citation alerts
    Zou Debin, Zhuo Hongbin, Shao Fuqiu, Ma Yanyun, Yin Yan, Ouyang Jianming, Yu Tongpu, Yang Xiaohu. Laser-Pulse Shaping in the Interaction of Ultra-Intense Laser Pulses with Ultra-Thin Foils[J]. Acta Optica Sinica, 2012, 32(7): 714001 Copy Citation Text show less
    References

    [1] G. A. Mourou, C. P. J. Barty, M. D. Perry. Ultrahigh-intensity lasers: physics of the extreme on a tabletop[J]. Phys. Today, 1998, 51(1): 22~28

    [2] Yan Xueqing, Lin Chen, Sheng Zhengming et al.. Generating high-current monoenergetic proton beams by a circularly polarized laser pulse in the phase-stable acceleration regime[J]. Phys. Rev. Lett., 2008, 100(13): 135003

    [3] L. Yin, B. J. Albright, B. M. Hegelich et al.. GeV laser ion acceleration from ultrathin targets: the laser break-out afterburner[J]. Laser Part. Beams, 2006, 24(2): 291~298

    [4] Yin Yan, Yu Wei, Yu Mingyang et al.. Influence of target thickness on the generation of high-density ion bunches by ultrashort circularly polarized laser pulses[J]. Phys. Plasmas, 2008, 15(9): 093106

    [5] Wang Wenpeng, Shen Baifei, Zhang Xiaomei et al.. Efficient acceleration of monoenergetic proton beam by sharp front laser pulse[J]. Phys. Plasmas, 2011, 18(1): 013103

    [6] Zhang Xiaomei, Shen Baifei, Jin Zhangying et al.. Generation of plasma intrinsic oscillation at the front surface of a target irradiated by a circularly polarized laser pulse[J]. Phys. Plasmas, 2009, 16(3): 033102

    [7] Zhuo Hongbin, Chen Zhenglin, Yu Wei et al.. Quasimonoenergetic proton bunch generation by dual-peaked electrostatic-field acceleration in foils irradiated by an intense linearly polarized laser[J]. Phys. Rev. Lett., 2010, 105(6): 065003

    [8] Yan Xueqing, Wu Huichun, Sheng Zhengming et al.. Self-organizing GeV, nanocoulomb, collimated proton beam from laser foil interaction at 7×1021 W/cm2[J]. Phys. Rev. Lett., 2009, 103(13): 135001

    [9] Shen Lei, Chen Shaohe, Ge Xiaping et al.. New temporary pulse shaping technique of the front-end system in laser facility[J]. Acta Optica Sinica, 2004, 24(1): 84~87

    [10] Lin Honghuan, Sui Zhan, Wang Jianjun et al.. Opitcal pulse shaping by chirped pulse stacking[J]. Acta Optica Sinica, 2007, 27(3): 466~470

    [11] S. Palaniyappan, R. C. Shan, R. Johnson et al.. Pulse shape measurements using single shot-frequency resolved optical gating for high energy (80 J) short pulse (600 fs) laser [J]. Rev. Sci. Instrum., 2010, 81(10): 10E103

    [12] Ji Liangliang, Shen Baifei, Zhang Xiaomei et al.. Generating quasi-single-cycle relativistic laser pulses by laser-foil interaction[J]. Phys. Rev. Lett., 2009, 103(21): 215005

    [13] V. A. Vshivkov, N. M. Naumova, F. Pegoraro et al.. Nonlinear electrodynamics of the interaction of ultra-intense laser pulses with a thin foil[J]. Phys. Plasmas, 1998, 5(7): 2727~2741

    [14] R. Lichters, R. E. W. Pfund, J. Meyer-ter-Vehn LPIC++ [R]. Max-Planck-Institut für Quantenoptik Report No.MPQ225. Garching, Germanny, 1997

    CLP Journals

    [1] Xia Changquan. Generation of Laser Pulse with Steep Leading Edge by Laser Interacting with a Thin Plasma Foil[J]. Acta Optica Sinica, 2015, 35(s1): 114002

    [2] Wang Fengchao. Research Progress of Scheme of Target-Normal Sheath Acceleration Ion[J]. Laser & Optoelectronics Progress, 2014, 51(12): 120008

    Zou Debin, Zhuo Hongbin, Shao Fuqiu, Ma Yanyun, Yin Yan, Ouyang Jianming, Yu Tongpu, Yang Xiaohu. Laser-Pulse Shaping in the Interaction of Ultra-Intense Laser Pulses with Ultra-Thin Foils[J]. Acta Optica Sinica, 2012, 32(7): 714001
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