论文标题
在强耦合无定形材料中超导性的有效理论
Effective Theory of Superconductivity in Strongly-Coupled Amorphous Materials
论文作者
论文摘要
在强偶联无定形材料中,基于对结构障碍的有效描述及其对振动光谱的影响,可以开发出语音介导的超导性超导性的理论。该理论解释了由于埃里亚斯贝格(Eliashberg)强耦合超导性理论中振动激发的扩散运输。与实验相比,该理论提供了Eliashberg函数$α^{2} f(ω)$的良好分析描述,并允许人们解散横向和纵向激发对Eliashberg功能的影响。特别是,它表明,横向激发在驱动低能量的Eliashberg功能的增加或过量方面起着至关重要的作用,这与玻璃振动光谱中的玻色子峰现象有关。这种低能量的过量,一方面驱动了电子 - 音波耦合的增强,但同时降低了Allen-Dynes公式中的特征能量尺度$ω_{log} $。结果,$ t_ {c} $的非单调性是基于$ \ text {pb} $的合金(疾病)的函数,可以合理化。还分析了基于$ \ text {al} $的系统的情况,该系统也从一开始就增加了$ t_ {c} $。提出了用于增强无定形超导体中$ t_ {c} $的一般材料设计原则。
A theory of phonon-mediated superconductivity in strong-coupling amorphous materials is developed based on an effective description of structural disorder and its effect on the vibrational spectrum. The theory accounts for the diffusive-like transport of vibrational excitations due to disorder-induced scattering within the Eliashberg theory of strong-coupling superconductivity. The theory provides a good analytical description of the Eliashberg function $α^{2}F(ω)$ in comparison with experiments, and allows one to disentangle the effects of transverse and longitudinal excitations on the Eliashberg function. In particular, it shows that the transverse excitations play a crucial role in driving an increase or excess in the Eliashberg function at low energy, which is related to the boson peak phenomenon in vibrational spectra of glasses. This low-energy excess, on one hand drives an enhancement of the electron-phonon coupling but at the same time reduces the characteristic energy scale $ω_{log}$ in the Allen-Dynes formula. As a consequence, the non-monotonicity of $T_{c}$ as a function of alloying (disorder) in $\text{Pb}$-based systems can be rationalized. The case of $\text{Al}$-based systems, where disorder increases $T_{c}$ from the start, is also analyzed. General material-design principles for enhancing $T_{c}$ in amorphous superconductors are presented.