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Generation of high-energy mono-energetic heavy ion beams by radiation pressure acceleration of ultra-intense laser pulses

机译:通过超强激光脉冲的辐射压力加速产生高能单能重离子束

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摘要

Generation of high-energy mono-energetic heavy ion beams by radiation pressure acceleration (RPA) of intense laser pulses is investigated. Different from previously studied RPA of protons or light ions, the dynamic ionization of high-Z atoms can stabilize the heavy ion acceleration. A self-organized, stable RPA scheme specifically for heavy ion beams is proposed, where the laser peak intensity is required to match with the large ionization energy gap when the successive ionization state passes the noble gas configurations [ such as removing an electron from the helium-like charge state (Z - 2)(+) to (Z - 1)(+)]. Two-dimensional particle-in-cell simulations show that a mono-energetic Al13+ beam with peak energy 1.0 GeV and energy spread of only 5% can be obtained at intensity of 7 x 10(20)W/cm(2) through the proposed scheme. A heavier, mono-energetic, ion beam (Fe26+) can attain a peak energy of 17 GeV by increasing the intensity to 10(22)W/cm(2). (C) 2014 AIP Publishing LLC.
机译:研究了通过强激光脉冲的辐射压力加速(RPA)产生高能单能重离子束。与以前研究的质子或轻离子的RPA不同,高Z原子的动态电离可以稳定重离子的加速。提出了一种专门针对重离子束的自组织,稳定的RPA方案,其中当连续电离状态通过稀有气体构型(例如从氦气中除去电子)时,要求激光峰值强度与较大的电离能隙匹配类电荷状态(Z-2)(+)至(Z-1)(+)]。二维单元格内粒子模拟显示,通过所提出的强度,可以在7 x 10(20)W / cm(2)的强度下获得单能量Al13 +束,其峰值能量为1.0 GeV,能量散布仅为5%。方案。通过将强度增加到10(22)W / cm(2),较重的单能量离子束(Fe26 +)可以达到17 GeV的峰值能量。 (C)2014 AIP Publishing LLC。

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