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首页> 外文期刊>Plasma physics and controlled fusion >On the investigation of fast electron beam filamentation in laser-irradiated solid targets using multi-MeV proton emission
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On the investigation of fast electron beam filamentation in laser-irradiated solid targets using multi-MeV proton emission

机译:多MeV质子发射研究激光辐照固体靶中的快速电子束丝化

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摘要

The transverse filamentation of beams of fast electrons transported in solid targets irradiated by ultraintense (5 × 10 ~(20) W cm ~(-2)), picosecond laser pulses is investigated experimentally. Filamentation is diagnosed by measuring the uniformity of a beam of multi-MeV protons accelerated by the sheath field formed by the arrival of the fast electrons at the rear of the target, and is investigated for metallic and insulator targets ranging in thickness from 50 to 1200 μm. By developing an analytical model, the effects of lateral expansion of electron beam filaments in the sheath during the proton acceleration process is shown to account for measured increases in proton beam nonuniformity with target thickness for the insulating targets.
机译:实验研究了皮秒激光脉冲在超高强度(5×10〜(20)W cm〜(-2))照射下在固体靶中传输的快速电子束的横丝。通过测量由快电子到达靶材后部形成的鞘层电场加速的多MeV质子束的均匀性来诊断细丝形成,并研究厚度为50至1200的金属和绝缘体靶材微米通过建立分析模型,显示了在质子加速过程中电子束细丝在护套中的横向膨胀的影响,说明了绝缘靶的质子束不均匀性随靶厚度的增加。

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