赝势
超导电性
凝聚态物理
库仑
BCS理论
临界场
物理
带隙
形式主义(音乐)
比热
兴奋剂
声子
联轴节(管道)
材料科学
量子力学
电子
音乐剧
配对
冶金
艺术
视觉艺术
标识
DOI:10.12693/aphyspola.144.337
摘要
Hydrocarbon compounds have recently been considered as highly promising materials for phonon-mediated superconductors, exhibiting high values of critical temperature (TC) in ambient pressure. In this study, we present a quantitative characterization of the superconducting properties of heavily-doped cg-C4H4. By using the Migdal–Eliashberg formalism, we demonstrate that the critical temperature in this material is relatively high (TC = 96.54 K) assuming that the Coulomb pseudopotential takes a value of 0.1. Furthermore, the used theoretical model allows for the characterization of other essential thermodynamic properties, such as the superconducting band gap, free energy, specific heat, and critical magnetic field. We observe that the characteristic thermodynamic ratios for the above-mentioned parameters differ from the predictions of the Bardeen–Cooper–Schrieffer theory. Our analysis suggests that strong-coupling and retardation effects play a crucial role in the discussed superconducting state, which cannot be described within the weak-coupling regime.
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