论文标题

PBCRO3中Mott Critical附近的巨型粘弹性,具有较大的晶格异常

Giant viscoelasticity near Mott criticality in PbCrO3 with large lattice anomalies

论文作者

Wang, Shanmin, Chen, Jian, Wu, Liusuo, Zhao, Yusheng

论文摘要

材料中电荷和晶格自由度的耦合可以产生有趣的电子现象,例如传统的超导性,其中电子是由晶格介导的,用于产生超流量。 Mott Transition是许多引人入胜的新兴行为的来源,最初被认为仅由与Ising Critical的相关电子驱动。关于已知Mott系统的最新研究表明,晶格的自由度也在发挥作用,引起了Landau或非常规的批判性。但是,莫特临界终点周围的电荷和晶格自由度的潜在耦合机制仍然难以捉摸,导致很难理解相关的莫特物理学。在这里,我们通过使用高压X射线衍射技术测量晶格参数来报告CubcRo3中Mott PBCRO3中的Mott Transition的研究。该材料中的巨大临界性通过较大的晶格异常揭示,该晶格异常受巨大的粘弹性控制,大概是由于晶格弹性和电子粘度的结合而产生的。由于具有粘弹性效应,该材料的晶格在关键端点附近的表现与任何现有的大学阶层不一致。我们认为,粘弹性可能是莫特批判性背后的隐藏自由程度。

Coupling of charge and lattice degrees of freedom in materials can produce intriguing electronic phenomena, such as conventional superconductivity where the electrons are mediated by lattice for creating supercurrent. The Mott transition, which is a source for many fascinating emergent behaviors, is originally thought to be driven solely by correlated electrons with an Ising criticality. Recent studies on the known Mott systems have shown that the lattice degree of freedom is also at play, giving rise to either Landau or unconventional criticality. However, the underlying coupling mechanism of charge and lattice degrees of freedom around the Mott critical endpoint remains elusive, leading to difficulties in understanding the associated Mott physics. Here we report a study of Mott transition in cubic PbCrO3 by measuring the lattice parameter, using high-pressure x-ray diffraction techniques. The Mott criticality in this material is revealed with large lattice anomalies, which is governed by giant viscoelasticity that presumably results from a combination of lattice elasticity and electron viscosity. Because of the viscoelastic effect, the lattice of this material behaves peculiarly near the critical endpoint, inconsistent with any existing university classes. We argue that the viscoelasticity may play as a hidden degree of freedom behind the Mott criticality.

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