Liu Xiao-Di, Howie Ross T, Zhang Hui-Chao, Chen Xiao-Jia, Gregoryanz Eugene
Key Laboratory of Materials Physics, Institute of Solid State Physics, Chinese Academy of Sciences, Hefei 230031, China.
Center for High Pressure Science & Technology Advanced Research, Shanghai, 201203, China.
Phys Rev Lett. 2017 Aug 11;119(6):065301. doi: 10.1103/PhysRevLett.119.065301. Epub 2017 Aug 7.
In situ high-pressure low-temperature high-quality Raman data for hydrogen and deuterium demonstrate the presence of a novel phase, phase II^{'}, unique to deuterium and distinct from the known phase II. Phase II^{'} of D_{2} is not observed in hydrogen, making it the only phase that does not exist in both isotopes and occupies a significant part of P-T space from ∼25 to 110 GPa and below 125 K. For H_{2}, the data show that below 30 K the transition to phase II happens at as low as 73 GPa. The transformation from phase II to III commences at around ∼155 GPa and is completed by 170 GPa with the average pressure of ∼160 GPa being slightly higher than previously thought. The updated phase diagrams of H_{2} and D_{2} demonstrate the difference between the isotopes at low temperatures and moderate pressures, providing new information on the phase diagrams of both elements.
氢和氘的原位高压低温高质量拉曼数据表明存在一种新相,即II'相,它是氘特有的,与已知的II相不同。在氢中未观察到D₂的II'相,这使其成为唯一不存在于两种同位素中的相,并且在约25至110 GPa和低于125 K的P-T空间中占据很大一部分。对于H₂,数据表明在30 K以下,向II相的转变在低至73 GPa时发生。从II相到III相的转变在约155 GPa左右开始,并在170 GPa时完成,平均压力约为160 GPa,略高于先前的想法。更新后的H₂和D₂相图展示了低温和中等压力下同位素之间的差异,为这两种元素的相图提供了新信息。