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Molecular response of liquid nitrogen multiply shocked to 40 GPa

机译:液氮倍增冲击至40 GPa的分子响应

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Liquid nitrogen was subjected to multiple shock compression to examine its response to pressures (15-40 GPa) and temperatures (1800-4000 K) previously unexplored in static and shock compression studies. Raman spectroscopy measurements were used to characterize the molecular bond response and to determine temperatures in the peak state. By extending our analysis to include other Raman spectroscopy measurements, an empirical relation was developed that describes the pressure and temperature dependence of the Raman shift (of the 2330 cm~(-1) mode) for both shock and static compression. Based on the P-T dependence of the Raman shifts, the liquid nitrogen molecular response is best understood by considering three temperature regimes: below 1500 K, 1500-4000 K, and above 4000 K. For the pressures and temperatures accessed in the present work, liquid nitrogen remains a molecular fluid, and becomes a grey-body emitter at the highest pressures.
机译:对液氮进行多次冲击压缩,以检查其对静态和冲击压缩研究中以前未曾探索过的压力(15-40 GPa)和温度(1800-4000 K)的响应。拉曼光谱测量用于表征分子键响应并确定峰态温度。通过扩展我们的分析以包括其他拉曼光谱测量,建立了一种经验关系,该关系描述了冲击和静态压缩时(2330 cm〜(-1)模式的拉曼位移)的压力和温度依赖性。基于拉曼位移的PT依赖性,可以通过考虑以下三种温度范围来最好地理解液氮分子响应:低于1500 K,低于1500-4000 K和高于4000K。对于本工作中获得的压力和温度,液体氮仍然是分子流体,并在最高压力下成为灰体发射体。

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