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用于激光诱导核聚变产物识别的CR-39径迹探测器对0.1 - 0.5兆电子伏至5兆电子伏的氢、氦和碳离子的校准。

CR-39 track detector calibration for H, He, and C ions from 0.1-0.5 MeV up to 5 MeV for laser-induced nuclear fusion product identification.

作者信息

Baccou C, Yahia V, Depierreux S, Neuville C, Goyon C, Consoli F, De Angelis R, Ducret J E, Boutoux G, Rafelski J, Labaune C

机构信息

LULI, Ecole Polytechnique, CNRS, CEA, UPMC, 91128 Palaiseau, France.

CEA, DAM, DIF, F-91297 Arpajon, France.

出版信息

Rev Sci Instrum. 2015 Aug;86(8):083307. doi: 10.1063/1.4927684.

Abstract

Laser-accelerated ion beams can be used in many applications and, especially, to initiate nuclear reactions out of thermal equilibrium. We have experimentally studied aneutronic fusion reactions induced by protons accelerated by the Target Normal Sheath Acceleration mechanism, colliding with a boron target. Such experiments require a rigorous method to identify the reaction products (alpha particles) collected in detectors among a few other ion species such as protons or carbon ions, for example. CR-39 track detectors are widely used because they are mostly sensitive to ions and their efficiency is near 100%. We present a complete calibration of CR-39 track detector for protons, alpha particles, and carbon ions. We give measurements of their track diameters for energy ranging from hundreds of keV to a few MeV and for etching times between 1 and 8 h. We used these results to identify alpha particles in our experiments on proton-boron fusion reactions initiated by laser-accelerated protons. We show that their number clearly increases when the boron fuel is preformed in a plasma state.

摘要

激光加速离子束可用于许多应用,特别是用于引发非热平衡的核反应。我们通过实验研究了由靶面法线鞘层加速机制加速的质子与硼靶碰撞所引发的无中子聚变反应。例如,此类实验需要一种严谨的方法,以便在诸如质子或碳离子等其他一些离子种类中识别探测器收集到的反应产物(α粒子)。CR-39径迹探测器被广泛使用,因为它们对离子大多敏感,且效率接近100%。我们给出了CR-39径迹探测器对质子、α粒子和碳离子的完整校准。我们给出了能量范围从数百keV到几MeV以及蚀刻时间在1至8小时之间时它们的径迹直径测量值。我们利用这些结果在由激光加速质子引发的质子-硼聚变反应实验中识别α粒子。我们表明,当硼燃料以等离子体状态预先形成时,α粒子的数量明显增加。

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