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Enhancement of target normal sheath acceleration in laser multi-channel target interaction

机译:激光多通道目标交互中目标正常鞘加速度的增强

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摘要

Target-normal sheath acceleration (TNSA) of ions by >100-fs relativistic laser pulses irradiating a multichannel target consisting of a row of parallel long wires and a plane back foil is studied. Two-dimensional particle-in-cell simulations show that the laser light pulls out from the wires a large number of dense hot attosecond electron bunches, which are synergetically accelerated forward by the relativistic ponderomotive force of the laser as well as the longitudinal electric field of a transverse magnetic mode that is excited in the vacuum channels between the wires. These electrons are characterized by a distinct two-temperature energy spectrum, with the temperature of the more energetic electrons close to twice the ponderomotive potential energy. After penetrating through the foil, they induce behind its rear surface a sheath electric field that is both stronger and frontally more extended than that without the channels. As a result, the TNSA ions have much higher maximum energy and the laser-to-ion energy conversion efficiency is also much higher. It is found that a laser of intensity 1.37 x 10(20) W/cm(2), duration 165 fs, and energy 25.6 J can produce 85 MeV protons and 31 MeV/u carbon ions, at 30% laser-to-ion energy conversion efficiency. The effects of the channel size and laser polarization on the TNSA ions are also investigated.
机译:通过> 100-FS相对论激光脉冲照射由一排并行长线和平面背箔的多通道靶的离子的目标正常鞘加速度(TNSA)。二维粒子内模拟表明,激光从电线中拉出大量致密的热阳离子电子束,这通过激光的相对论思考力以及纵向电场来协同加速。在电线之间的真空通道中激发的横向磁光模式。这些电子的特征在于不同的两个温度能谱,其温度更加活性电子接近追随锚点势能的两倍。在穿过箔片后,它们在其后表面后面诱导鞘电场,该鞘电场比没有通道更强,正常更长。结果,TNSA离子具有更高的最大能量,激光到离子能量转换效率也高得多。发现强度1.37×10(20),持续时间165fs和能量25.6j的激光可以产生85mev质子和31mev / u碳离子,以30%激光 - 离子能量转换效率。还研究了通道尺寸和激光偏振对TNSA离子的影响。

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