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首页> 外文期刊>Plasma physics and controlled fusion >Measurement of local density and magnetic field of a magnetized plasma using Raman scattering from a focused laser pulse
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Measurement of local density and magnetic field of a magnetized plasma using Raman scattering from a focused laser pulse

机译:使用聚焦激光脉冲的拉曼散射测量磁化等离子体的局部密度和磁场

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摘要

We investigated the possibility of pin pointing the local density and magnetic field of an inhomogeneous, magnetized plasma by stimulated Raman scattering of a pump laser pulse focused on a desired position. As the Raman growth rate is proportional to the pump pulse amplitude, the spectral peak shift of the scattered signal is, though it is a spatially integrated one, expected to be determined dominantly by that from the focal position of the pump pulse. From a theoretical estimation, we found a condition of the pulse duration and plasma density for such an expectation to properly work. It was confirmed by two-dimensional particle-in-cell simulations that as long as the pulse duration is long and the length scale of the plasma inhomogeneity is large compared to the Rayleigh length, the spectral bandwidth of the spatially integrated Raman signal can be narrow enough to distinguish the peak position with good enough resolution.
机译:我们研究了通过聚焦在所需位置的泵浦激光脉冲的受激拉曼散射,用针指向不均匀的磁化等离子体的局部密度和磁场的可能性。由于拉曼增长率与泵浦脉冲幅度成正比,因此尽管是空间积分信号,但散射信号的频谱峰值偏移是主要由泵浦脉冲的焦点位置决定的,尽管它是空间积分的。从理论上的估计,我们发现了脉冲持续时间和等离子体密度的条件,这种期望可以正常工作。通过二维粒子模拟,可以证实,与瑞利长度相比,只要脉冲持续时间长且等离子体不均匀性的长度尺度较大,空间积分拉曼信号的频谱带宽就可以变窄足以以足够好的分辨率区分峰位置。

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