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Theory of Thomson scattering in inhomogeneous media

机译:非均匀介质中的汤姆逊散射理论

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Thomson scattering of laser light is one of the most fundamental diagnostics of plasma density, temperature and magnetic fields. It relies on the assumption that the properties in the probed volume are homogeneous and constant during the probing time. On the other hand, laboratory plasmas are seldom uniform and homogeneous on the temporal and spatial dimensions over which data is collected. This is particularly true for laser-produced high-energy-density matter, which often exhibits steep gradients in temperature, density and pressure, on a scale determined by the laser focus. Here, we discuss the modification of the cross section for Thomson scattering in fully-ionized media exhibiting steep spatial inhomogeneities and/or fast temporal fluctuations. We show that the predicted Thomson scattering spectra are greatly altered compared to the uniform case, and may lead to violations of detailed balance. Therefore, careful interpretation of the spectra is necessary for spatially or temporally inhomogeneous systems.
机译:汤姆逊激光散射是等离子体密度,温度和磁场的最基本诊断方法之一。它基于这样的假设:在探测时间内,探测体积中的属性是均匀且恒定的。另一方面,实验室血浆在收集数据的时间和空间维度上很少是均匀和均匀的。对于由激光产生的高能量密度物质,尤其如此,该物质通常在温度,密度和压力方面表现出陡峭的梯度,其大小取决于激光焦点。在这里,我们讨论汤姆逊散射在横截面的修改,该频谱在显示出陡峭的空间不均匀性和/或快速的时间波动的全电离介质中。我们表明,与均匀情况相比,预测的Thomson散射光谱发生了很大变化,并且可能导致违反详细平衡。因此,对于空间或时间上不均匀的系统,光谱的仔细解释是必要的。

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