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Critical temperature of metallic hydrogen sulfide at 225-GPa pressure

机译:225-GPA压力下金属硫化氢的临界温度

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摘要

The Eliashberg theory generalized for electron-phonon systems with a nonconstant density of electron states and with allowance made for the frequency behavior of the electron mass and chemical potential renormalizations is used to study T (c) in the SH3 phase of hydrogen sulfide under pressure. The phonon contribution to the anomalous electron Green's function is considered. The pairing within the total width of the electron band and not only in a narrow layer near the Fermi surface is taken into account. The frequency and temperature dependences of the complex mass renormalization ReZ(omega), the density of states N(epsilon) renormalized by the electron-phonon interactions, and the electron-phonon spectral function obtained computationally are used to calculate the anomalous electron Green's function. A generalized Eliashberg equation with a variable density of electron states has been solved. The frequency dependence of the real and imaginary parts of the order parameter in the SH3 phase has been obtained. The value of T (c) ae 177 K in the SH3 phase of hydrogen sulfide at pressure P = 225 GPa has been determined by solving the system of Eliashberg equations.
机译:ELIASHBERG理论广泛地用于具有电子状态不稳定密度的电子 - 声子系统和对电子质量的频率行为的余量和化学潜在的重整化的余量用于在压力下研究硫化氢SH3相中的T(c)。考虑了对异常电子函数的贡献。考虑电子带的总宽度内的配对,不仅在Fermi表面附近的窄层中。复杂大规模重新定化Rez(Omega)的频率和温度依赖性,通过电子声子相互作用称为正常化的状态N(ε)的密度,并且计算地获得的电子 - 声子谱函数用于计算异常电子绿色的功能。解决了具有可变密度的电子状态的广义ELIASHBERG方程。已经获得了SH3阶段中订单参数的真实和虚部的频率依赖性。通过求解ELIASHBERG方程的系统,确定了在压力P = 225GPa下硫化氢SH3相中的T(c)AE 177k的值。

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