电荷密度波
电荷(物理)
点(几何)
物理
凝聚态物理
量子力学
数学
几何学
超导电性
作者
Y. V. Tymoshenko,Amir A. Haghighirad,R. Heid,Tom Lacmann,Alsu Ivashko,Adrian Merritt,Xingchen Shen,Michael Merz,Gastón Garbarino,L. Paolasini,Alexeï Bosak,Florian Diekmann,Kai Roßnagel,Stephan Rosenkranz,Ayman Said,F. Weber
标识
DOI:10.1038/s42005-025-02254-3
摘要
Abstract The presence of a quantum-critical point (QCP) at which a nearby ordered phase is suppressed to zero temperature is often invoked to explain emergent quantum phases, e.g. superconductivity. Yet, identifying a QCP and establishing its correlation with superconductivity remains challenging. Materials featuring charge-density-wave (CDW) order and superconductivity offer a clear scenario as both states can be associated with electron-phonon coupling. Here, we uncover a CDW-QCP and demonstrate its interrelation with superconductivity in the prototypical transition-metal dichalcogenide 2 H -TaSe 2 . We determine the evolution of the CDW state up to and beyond its suppression at the critical pressure p c = 19.9(1) GPa by means of X-ray diffraction and inelastic X-ray scattering measurements providing a full crystallographic refinement of the commensurate CDW superstructure. The pressure-induced CDW-QCP in close vicinity to the maximum superconducting transition temperature. Ab-initio lattice dynamical calculations corroborate that 2 H -TaSe 2 features order-parameter fluctuation enhanced superconductivity and can serve as a paradigm to investigate superconductivity near a CDW-QCP.
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