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Development of a Nomarski-type multi-frame interferometer as a time and space resolving diagnostics for the free electron density of laser-generated plasma

机译:开发Nomarski型多框架干涉仪作为时间和空间分辨诊断激光产生等离子体的自由电子密度的方法

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This article reports on the development and set-up of a Nomarski-type multi-frame interferometer as a time and space resolving diagnostics of the free electron density in laser-generated plasma. The interferometer allows the recording of a series of 4 images within 6 ns of a single laser-plasma interaction. For the setup presented here, the minimal accessible free electron density is 5 × 1018 cm-3, the maximal one is 2 × 1020 cm-3. Furthermore, it provides a resolution of the electron density in space of 50 μm and in time of 0.5 ns for one image with a customizable magnification in space for each of the 4 images. The electron density was evaluated from the interferograms using an Abel inversion algorithm. The functionality of the system was proven during first experiments and the experimental results are presented and discussed. A ray tracing procedure was realized to verify the interferometry pictures taken. In particular, the experimental results are compared to simulations and show excellent agreement, providing a conclusive picture of the evolution of the electron density distribution.
机译:本文报道了Nomarski型多框架干涉仪的开发和设置,该干涉仪是对激光产生的等离子体中的自由电子密度进行时间和空间分辨的诊断。干涉仪允许在单个激光-等离子体相互作用的6 ns内记录一系列4张图像。对于此处介绍的设置,最小可访问自由电子密度为5×10 18 cm -3 ,最大为2×10 20 cm -3 。此外,它为一张图像提供了50μm的空间和0.5 ns的时间中的电子密度的分辨率,并为4张图像的每一个提供了可自定义的空间放大率。使用Abel反演算法从干涉图评估电子密度。该系统的功能在第一次实验中得到了证明,并给出了实验结果并进行了讨论。实现了光线追踪程序以验证所拍摄的干涉图。特别是,将实验结果与仿真结果进行了比较,并显示出极好的一致性,从而提供了电子密度分布演变的结论性图片。

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