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Acceleration of protons to high energies by an ultra-intense femtosecond laser pulse

机译:通过超强度飞秒激光脉冲将质子加速质子为高能量

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The paper reports the results of two-dimensional particle-in-cell simulations of proton beam acceleration at the interactions of a 130-fs laser pulse of intensity from the range of 10~(21) - 10~(23) W/cm~2, predicted for the Extreme Light Infrastructure (ELI) lasers currently built in Europe, with a thin hydrocarbon (CH) target. A special attention is paid to the effect of the laser pulse intensity and polarization (linear - LP, circular - CP) as well as the target thickness on the proton energy spectrum, the proton beam spatial distribution and the proton pulse shape and intensity. It is shown that for the highest, ultra-relativistic intensities (~ 10~(23) W/cm~2) the effect of laser polarization on the proton beam parameters is relatively weak and for both polarizations quasi-monoenergetic proton beams of the mean proton energy ~ 2 GeV and δE/E ≈ 0.3 for LP and δE/E ≈ 0.2 for CP are generated from the 0.1-μm CH target. At short distances from the irradiated target (< 50 um), the proton pulse is very short (< 20 fs), and the proton beam intensities reach extremely high values > 10~(21) W/cm~2, which are much higher than those attainable in conventional accelerators. Such proton beams can open the door for new areas of research in high energy-density physics and nuclear physics as well as can also prove useful for applications in materials research e.g. as a tool for high-resolution proton radiography.
机译:本文报告了在130-FS激光脉冲强度的相互作用中,从10〜(21) - 10〜(23)W / cm〜的相互作用的二维粒子电池模拟质子束加速度的结果2,预测目前在欧洲建造的极端灯基础设施(ELI)激光器,具有薄的碳氢化合物(CH)目标。特别注意激光脉冲强度和偏振(线性 - LP,圆形 - CP)以及质子能谱上的目标厚度,质子束空间分布和质子脉冲形状和强度的影响。结果表明,对于最高,超相对论的强度(〜10〜(23)W / cm〜2)激光极化对质子束参数的影响是相对较弱的,并且对于平均值的偏振偏振偏振量质子能量〜2 GEV和ΔE/e≈0.3,LP和ΔE/e≈0.2对于CP的0.1μmCH靶产生。在辐照靶(<50μm)的短距离下,质子脉冲非常短(<20 fs),质子束强度达到极高的值> 10〜(21)w / cm〜2,其要高得多而不是传统加速器中可达到的人。这种质子梁可以为高能量密度物理和核物理学的新研究领域开门,也可以证明材料研究中的应用是有用的。作为高分辨率质子造影的工具。

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