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首页> 外文期刊>Physical Review. Accelerators and Beams >Collisionless Shock Acceleration of High-Flux Quasimonoenergetic Proton Beams Driven by Circularly Polarized Laser Pulses
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Collisionless Shock Acceleration of High-Flux Quasimonoenergetic Proton Beams Driven by Circularly Polarized Laser Pulses

机译:圆偏振激光脉冲驱动的高通量准单能质子束的无碰撞冲击加速

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We present experimental studies on ion acceleration using an 800-nm circularly polarized laser pulse with a peak intensity of $6.9ifmmodeimeselseexttimesi{}{10}^{19}ext{ }ext{ }mathrm{W}/{mathrm{cm}}^{2}$ interacting with an overdense plasma that is produced by a laser prepulse ionizing an initially ultrathin plastic foil. The proton spectra exhibit spectral peaks at energies up to 9 MeV with energy spreads of 30% and fluxes as high as $3ifmmodeimeselseexttimesi{}{10}^{12}ext{ }ext{ }mathrm{protons}/mathrm{MeV}/mathrm{sr}$. Two-dimensional particle-in-cell simulations reveal that collisionless shocks are efficiently launched by circularly polarized lasers in exploded plasmas, resulting in the acceleration of quasimonoenergetic proton beams. Furthermore, this scheme predicts the generation of quasimonoenergetic proton beams with peak energies of approximately 150 MeV using current laser technology, representing a significant step toward applications such as proton therapy.
机译:我们目前使用峰值强度为$ 6.9 ifmmode times else texttimes fi {} {10} ^ {19} text {} text {} 的800 nm圆偏振激光脉冲进行离子加速的实验研究。 mathrm {W} / { mathrm {cm}} ^ {2} $与通过激光预脉冲化最初超薄塑料箔而产生的过稠等离子体相互作用。质子光谱在能量高达9 MeV时显示谱峰,能量散布为30%,通量高达$ 3 ifmmode times else texttimes fi {} {10} ^ {12} text {} text { } mathrm {质子} / mathrm {MeV} / mathrm {sr} $。二维单元格粒子模拟显示,圆偏振激光在爆炸的等离子体中有效发射了无碰撞冲击,从而导致了准单能质子束的加速。此外,该方案利用当前的激光技术预测了峰值能量约为150 MeV的准单能质子束的产生,这是向诸如质子治疗等应用迈出的重要一步。

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