Huang Xiaoli, Wang Xin, Duan Defang, Sundqvist Bertil, Li Xin, Huang Yanping, Yu Hongyu, Li Fangfei, Zhou Qiang, Liu Bingbing, Cui Tian
State Key Laboratory of Superhard Materials, College of Physics, Jilin University, Changchun 130012, China.
Department of Physics, Umeå University, SE-90187 Umeå, Sweden.
Natl Sci Rev. 2019 Jul;6(4):713-718. doi: 10.1093/nsr/nwz061. Epub 2019 May 9.
The search for high-temperature superconductivity is one of the research frontiers in physics. In the sulfur hydride system, an extremely high (∼200 K) has been recently developed at pressure. However, the Meissner effect measurement above megabar pressures is still a great challenge. Here, we report the superconductivity identification of sulfur hydride at pressure, employing an alternating-current magnetic susceptibility technique. We determine the superconducting phase diagram, finding that superconductivity suddenly appears at 117 GPa and reaches 183 K at 149 GPa before decreasing monotonically with increasing pressure. By means of theoretical calculations, we elucidate the variation of in the low-pressure region in terms of the changing stoichiometry of sulfur hydride and the further decrease in owing to a drop in the electron-phonon interaction parameter λ. This work provides a new insight into clarifying superconducting phenomena and anchoring the superconducting phase diagram in the hydrides.
寻找高温超导性是物理学的前沿研究领域之一。在硫化氢体系中,最近在高压下已实现了极高的转变温度(约200 K)。然而,在超高压以上进行迈斯纳效应测量仍然是一项巨大的挑战。在此,我们报告了利用交流磁化率技术在高压下对硫化氢超导性的鉴定。我们确定了超导相图,发现超导性在117 GPa时突然出现,并在149 GPa时达到183 K,随后随着压力增加而单调下降。通过理论计算,我们根据硫化氢化学计量比的变化以及由于电子 - 声子相互作用参数λ下降导致的转变温度进一步降低,阐明了低压区域转变温度的变化情况。这项工作为阐明超导现象和确定氢化物中的超导相图提供了新的见解。