Wavenumber Calibration for an Imaging Refractometer

A. Rososhek, B. R. Kusse, W. M. Potter, N. J. Wilson, E. S. Lavine, D. A. Hammer
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Abstract

An imaging refractrometer can be used to describe the properties of a high-energy density plasma by analyzing the transverse intensity distribution of a laser beam that has passed through the plasma. The output of the refractrometer can be directly calibrated in terms of beam deflection angles using ray transfer matrix analysis. This paper describes a novel way to calibrate the refractrometer output in terms of the spatial wavenumbers of the transverse intensity distribution of the laser beam. This is accomplished by replacing the plasma with a gridded structure that modulates the transverse intensity of the beam, producing an intensity distribution with a known Fourier Transform. This calibration technique will generate a one-to-one mapping of deflection angle to wavenumber and will enable measurement of the size of Fourier space available to the system. The spectrum of wavenumbers generated when the laser beam passes through a high-energy density plasma may contain information about the types of density fluctuation that are present in the plasma.
成像折射仪的波长校准
成像折射仪可以通过分析穿过等离子体的激光束的横向强度分布来描述高能量密度等离子体的特性。通过射线转移矩阵分析,可以直接根据光束偏转角校准折射仪的输出。本文介绍了一种根据激光束横向强度分布的空间波数校准折射仪输出的新方法。具体方法是用网格结构代替等离子体,网格结构会对光束的横向强度进行调制,从而产生具有已知傅里叶变换的强度分布。这种校准技术将产生偏转角与波数的一对一映射,并能测量系统可用的傅立叶空间大小。激光束穿过高能量密度等离子体时产生的波长谱可能包含等离子体中存在的密度波动类型的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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