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Laser Doppler interferometer based on a solid Fabry-Perot etalon for measurement of surface velocity in shock experiments

机译:基于固体Fabry-Perot标准具的激光多普勒干涉仪,用于在冲击实验中测量表面速度

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摘要

This study presents an original optical system designed for measuring the free surface velocity for shock wave diagnostics. The system is based on a solid Fabry-Perot etalon interferometer coupled to a tunable, single frequency laser. The setup assembled for this purpose can measure velocities up to 200 m s~(-1) and has a resolution time of about 1 ns. This system was validated in shock experiments performed on thin aluminum samples. The shock waves were generated by a pulsed laser on a water confinement configuration and the surface velocity was measured on the opposite side of the sample. The signals obtained are in good agreement with numerical simulation and results found in the literature. This system presents an interesting alternative to the velocity interferometer system for any reflectors (VISAR) commonly used in shock experiments.
机译:这项研究提出了一种原始光学系统,旨在测量自由表面速度以进行冲击波诊断。该系统基于与可调单频激光器耦合的固态Fabry-Perot标准具干涉仪。为此目的组装的装置可以测量高达200 m s〜(-1)的速度,并且分辨时间约为1 ns。该系统在对薄铝样品进行的冲击实验中得到了验证。冲击波是由脉冲激光器在水限制条件下产生的,并且在样品的另一侧测量了表面速度。获得的信号与数值模拟和文献中的结果非常吻合。对于冲击实验中常用的任何反射器(VISAR),该系统为速度干涉仪系统提供了一种有趣的替代方法。

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