论文标题

从真空中的冲击样品中喷射颗粒的光子多普勒速度光谱的重建和解释

Reconstruction and interpretation of photon Doppler velocimetry spectrum for ejecta particles from shock-loaded sample in vacuum

论文作者

Shi, Xiao-Feng, Ma, Dong-Jun, Dang, Song-lin, Ma, Zong-Qiang, Sun, Hai-Quan, He, An-Min, Wang, Pei

论文摘要

研究了光子多普勒速度法(PDV)频谱,以试图从真空中揭示冲击的样品的弹出粒子参数。考虑到光的多散射效应的GPU加速蒙特卡洛算法,用于重建射流的光场并模拟相应的PDV光谱。定性地讨论了速度曲线,总面积质量和喷射粒径对模拟光谱的影响。为了促进定量讨论,提出了一种新型的理论光学模型,其中应用了单散射假设。使用此模型,得出了弹出粒子参数与PDV频谱的峰值信息之间的关系,从而使粒子参数从PDV频谱中直接提取。从实验光谱估计的射出参数的值与通过压电探针测量的值非常吻合。

The photon Doppler velocimetry (PDV) spectrum is investigated in an attempt to reveal the particle parameters of ejecta from shock-loaded samples in a vacuum. A GPU-accelerated Monte-Carlo algorithm, which considers the multiple-scattering effects of light, is applied to reconstruct the light field of the ejecta and simulate the corresponding PDV spectrum. The influence of the velocity profile, total area mass, and particle size of the ejecta on the simulated spectra is discussed qualitatively. To facilitate a quantitative discussion, a novel theoretical optical model is proposed in which the single-scattering assumption is applied. With this model, the relationships between the particle parameters of ejecta and the peak information of the PDV spectrum are derived, enabling direct extraction of the particle parameters from the PDV spectrum. The values of the ejecta parameters estimated from the experimental spectrum are in good agreement with those measured by a piezoelectric probe.

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