铜超导体中声子色散的反常软化

Saheli Sarkar, M. Grandadam, C. P'epin
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引用次数: 3

摘要

在低掺杂铜超导体中,在电荷密度波(CDW)有序波矢量上观察到声子色散的软化。有趣的是,软化发生在超导(SC)转变温度T$_{c}$以下,而金属体系的软化通常发生在CDW起始温度T$_{\text{CDW}}$以下。对低掺杂铜酸盐中声子软化的“异常”性质及其与伪间隙相的联系的理解仍然是一个悬而未决的问题。在微扰方法中,我们证明了普遍存在的CDW, SC阶和与热波动相关的准粒子寿命之间的复杂相互作用可以解释T$_{c}$以下的异常声子软化。此外,我们的形式捕捉到低温声子软化的不同特性,这取决于材料的特殊性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anomalous softening of phonon dispersion in cuprate superconductors
A softening of phonon-dispersion has been observed experimentally in under-doped cuprate superconductors at the charge-density wave (CDW) ordering wave vector. Interestingly, the softening occurs below the superconducting (SC) transition temperature T$_{c}$, in contrast to the metallic systems, where the softening occurs usually below the CDW onset temperature T$_{\text{CDW}}$. An understanding of the `anomalous' nature of the phonon-softening and its connection to the pseudo-gap phase in under-doped cuprates remain open questions. Within a perturbative approach, we show that a complex interplay among the ubiquitous CDW, SC orders and life-time of quasi-particles associated to thermal fluctuations, can explain the anomalous phonon-softening below T$_{c}$. Furthermore, our formalism captures different characteristics of the low temperature phonon-softening depending on material specificity.
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