Metal hydrogen sulfide superconducting temperature

Nikolay A. Kudryashov, A. Kutukov, Evgeny A. Mazur
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引用次数: 2

Abstract

Abstract Éliashberg theory is generalized to the electronphonon (EP) systems with the not constant density of electronic states. The phonon contribution to the anomalous electron Green’s function (GF) is considered. The generalized Éliashberg equations with the variable density of electronic states are resolved for the hydrogen sulphide SH3 phase under pressure. The dependence of both the real and the imaginary part of the order parameter on the frequency in the SH3 phase is obtained. The Tc = 177 K value in the hydrogen sulfide SH3 phase at the pressure P = 225 GPa has been defined. The results of the solution of the Eliashberg equations for the Im-3m (170 GPa), Im-3m (200 GPa) and R3m (120 GPa) phases are presented. A peak value Tc = 241 K of the superconducting transition temperature has been predicted.
金属硫化氢超导温度
摘要Éliashberg理论推广到电子态密度不恒定的电子-声子(EP)系统。考虑了声子对异常电子格林函数(GF)的贡献。求解了压力下硫化氢SH3相变电子态密度的广义Éliashberg方程。得到了阶数参数实部和虚部与SH3相位频率的关系。确定了压力P = 225 GPa时硫化氢SH3相的Tc = 177 K值。给出了Im-3m (170 GPa)、Im-3m (200 GPa)和R3m (120 GPa)相Eliashberg方程的求解结果。预测了超导转变温度的峰值Tc = 241 K。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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