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Influence of Coulomb scattering on the proton radiography of electric and magnetic fields in plasmas

机译:库仑散射对等离子体中电场和磁场质子射线照相的影响

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Proton radiography is a widely used experimental method to diagnose the electric and magnetic (EM) fields in high-energy-density plasmas. In proton radiography, the probe protons are typically assumed to be deflected only by the EM fields, whereas the Coulomb scattering caused by the charged particles in the target plasmas is generally ignored. However, at high plasma densities, the presence of Coulomb scattering could reduce the proton flux perturbations recorded on the detector and influence the inversion of the EM fields from experiments. In this paper, a theoretical model is developed for the first time to describe the proton flux distribution on the detector when the EM field deflections and Coulomb scattering coexist in deflecting the probe proton trajectories. Our theory indicates that the Coulomb scattering could decrease the signal contrast of the probed EM fields, which is determined not only by the strengths of the EM field deflections and Coulomb scattering but also by the spatial gradient of the EM fields. Monte Carlo simulations are also conducted to validate our theoretical model. It would be helpful to interpret the proton radiography experiments quantitatively. (c) 2024 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license
机译:质子射线照相是一种广泛使用的实验方法,用于诊断高能量密度等离子体中的电场和磁场 (EM)。在质子射线照相中,通常假设探针质子仅被 EM 场偏转,而由目标等离子体中的带电粒子引起的库仑散射通常被忽略。然而,在高等离子体密度下,库仑散射的存在可以减少探测器上记录的质子通量扰动,并影响实验中电磁场的反转。在本文中,首次开发了一个理论模型来描述当电磁场偏转和库仑散射共存时探测器上的质子通量分布,使探针质子轨迹偏转。我们的理论表明,库仑散射可以降低探测的电磁场的信号对比度,这不仅取决于电磁场偏转和库仑散射的强度,还取决于电磁场的空间梯度。还进行了蒙特卡洛模拟以验证我们的理论模型。定量解释质子 X 线照相实验会有所帮助。(c) 2024 作者。除非另有说明,否则所有文章内容均根据知识共享署名 (CC BY) 许可进行许可

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