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Correlation-induced superconductivity dynamically stabilized and enhanced by laser irradiation

机译:激光辐照动态稳定并增强了相关诱导的超导性

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摘要

Studies on out-of-equilibrium dynamics have paved a way to realize a new state of matter. Superconductor-like properties above room temperatures recently suggested to be in copper oxides achieved by selectively exciting vibrational phonon modes by laser have inspired studies on an alternative and general strategy to be pursued for high-temperature superconductivity. We show that the superconductivity can be enhanced by irradiating laser to correlated electron systems owing to two mechanisms: First, the effective attractive interaction of carriers is enhanced by the dynamical localization mechanism, which drives the system into strong coupling regions. Second, the irradiation allows reaching uniform and enhanced superconductivity dynamically stabilized without deteriorating into equilibrium inhomogeneities that suppress superconductivity. The dynamical superconductivity is subject to the Higgs oscillations during and after the irradiation. Our finding sheds light on a way to enhance superconductivity that is inaccessible in equilibrium in strongly correlated electron systems.
机译:对不平衡动力学的研究为实现新的物质状态铺平了道路。最近提出在室温以上具有超导体类特性,这是通过用激光选择性激发振动声子模式而获得的氧化铜,这激发了对高温超导性所追求的替代和一般策略的研究。我们表明,由于两种机理,可以通过向相关电子系统照射激光来增强超导性:首先,通过动态定位机制增强了载流子的有效吸引相互作用,这将系统驱动到强耦合区域。第二,辐照允许动态稳定地达到均匀且增强的超导,而不会恶化为抑制超导的平衡不均匀性。动态超导性在辐照期间和辐照后会发生希格斯振荡。我们的发现揭示了一种增强超导性的方法,这种方法在强相关电子系统的平衡中是无法实现的。

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