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Raman measurements of phase transitions in dense solid hydrogen and deuterium to 325 GPa

机译:拉曼测量在固态氢和氘中至325 GPa的相变

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摘要

Raman spectroscopy of dense hydrogen and deuterium performed to 325 GPa at 300 K reveals previously unidentified transitions. Detailed analysis of the spectra from multiple experimental runs, together with comparison with previous infrared and Raman measurements, provides information on structural modifications of hydrogen as a function of density through the I–III–IV transition sequence, beginning near 200 GPa at 300 K. The data suggest that the transition sequence at these temperatures proceeds by formation of disordered stacking of molecular and distorted layers. Weaker spectral changes are observed at 250, 285, and 300 GPa, that are characterized by discontinuities in pressure shifts of Raman frequencies, and changes in intensities and linewidths. The results indicate changes in structure and bonding, molecular orientational order, and electronic structure of dense hydrogen at these conditions. The data suggest the existence of new phases, either variations of phase IV, or altogether new structures.
机译:在300 K下进行至325 GPa的致密氢和氘的拉曼光谱揭示了以前无法确定的跃迁。对来自多个实验运行的光谱的详细分析,以及与先前的红外和拉曼测量结果的比较,提供了有关氢的结构修饰的信息,该结构是通过I–III–IV跃迁序列随密度变化的函数,起始于300 K时接近200 GPa。数据表明,在这些温度下的过渡序列是通过形成无序的分子层和扭曲层的堆积而进行的。在250、285和300 GPa处观察到较弱的光谱变化,其特征是拉曼频率的压力位移不连续以及强度和线宽的变化。结果表明在这些条件下致密氢的结构和键,分子取向顺序以及电子结构的变化。数据表明存在新的阶段,或者是第四阶段的变体,或者完全是新的结构。

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