Grupo de Investigación en Ciencias Básicas, Aplicación e innovación- CIBAIN, Unitrópico, Yopal, Colombia.
Fundación Universitaria Los Libertadores, Facultad de Ingeniería y Ciencias Básicas, Bogotá, Colombia.
PLoS One. 2023 Jun 6;18(6):e0286855. doi: 10.1371/journal.pone.0286855. eCollection 2023.
The functional derivative of the superconducting transition temperature Tc with respect to the electron-phonon coupling function [Formula: see text] permits identifying the frequency regions where phonons are most effective in raising Tc. This work presents an analysis of temperature effects on the calculation of the δTc/δα2F(ω) and μ* parameters. The results may permit establishing that the variation of the temperature in the δTc/δα2F(ω) and μ* parameter allows establishing patterns and conditions that are possibly related to the physical conditions in the superconducting state, with implications on the theoretical estimation of the Tc.
超导转变温度 Tc 对电子-声子耦合函数 [Formula: see text] 的泛函导数允许确定在哪些频率区域声子在提高 Tc 方面最有效。本工作分析了温度对 δTc/δα2F(ω) 和 μ参数计算的影响。结果可能表明,δTc/δα2F(ω)和 μ参数的温度变化可以确定可能与超导状态物理条件相关的模式和条件,这对 Tc 的理论估计有影响。