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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >In Situ Raman Spectroscopic Studies of Liquid Carbon Tetrachloride (CCl4) Under Static and Laser-Driven Shock Compression
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In Situ Raman Spectroscopic Studies of Liquid Carbon Tetrachloride (CCl4) Under Static and Laser-Driven Shock Compression

机译:在静电和激光驱动冲击压缩下液态碳四氯化物(CCL4)的原位拉曼光谱研究

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High pressure (up to similar to 2.2 GPa) Raman scattering studies were performed in carbon tetrachloride (CCl4) under static and dynamic compressions using diamond anvil cell (DAC) and laser-driven shock methods, respectively, and their results are compared. The laser-driven shock experiments were conducted in a glass-confined target geometry. The symmetric stretching mode nu(1), symmetric bending mode nu(2), and asymmetric bending mode nu(4) blueshifts with pressure. Mode Gruneisen parameters were obtained for the above Raman modes. Time-resolved Raman spectroscopic (TRRS) studies were performed under laser-driven shock compression at different delay times. Shock velocity deduced from the intensity ratios of Raman signal scattered from unshocked and shocked regions of symmetric stretching mode is in agreement with the one obtained from one-dimensional hydrodynamic simulations.
机译:在使用金刚石砧座(DAC)和激光驱动的冲击方法的静态和动态压缩下,在静态和动态压缩下,在静态和动态压缩下进行高压(最高达20GPA)拉曼散射研究。比较它们的结果。 激光驱动的冲击实验是在玻璃密闭的目标几何形状中进行的。 对称拉伸模式Nu(1),对称弯曲模式Nu(2)和不对称弯曲模式Nu(4)BlueShifts的压力。 为上述拉曼模式获得了模式Gruneisen参数。 在不同延迟时间的激光驱动冲击压缩下进行时间分辨拉曼光谱(TRR)研究。 从来自对称拉伸模式的未叠加和震动区域散射的拉曼信号的强度比推导的冲击速度与一维流体动力模拟中获得的一个人一致。

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