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Possible Light-Induced Superconductivity in a Strongly Correlated Electron System

机译:在强相关的电子系统中可能的光诱导超导性

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Using a nonequilibrium implementation of the Lanczos-based exact diagonalisation technique we study the possibility of the light-induced superconducting phase coherence in a solid state system after an ultrafast optical excitation. In particular, we investigate the buildup of superconducting correlations by calculating an exact time-dependent wave function reflecting the properties of the system in non-equilibrium and the corresponding transient response functions. Within our picture we identify a possible transient Meissner effect after dynamical quenching of the non-superconducting wavefunction and extract a characteristic superfluid density that we compare to experimental data. Finally, we find that the stability of the induced superconducting state depends crucially on the nature of the excitation quench: namely, a pure interaction quench induces a long-lived superconducting state, whereas a phase quench leads to a short-lived transient superconductor.
机译:使用基于Lanczos的精确对角化技术的非QuiBibiBribium实现我们研究了超速光学激发后在固态系统中的光诱导超导相干的可能性。 特别地,我们通过计算反映在非平衡和相应的瞬态响应函数中的系统的精确时间相关波函数来研究超导相关性的积累。 在我们的图片中,我们确定了在非超导挥发的动态淬火之后可能的瞬态Meissner效果,并提取与实验数据的特征超流密度。 最后,我们发现感应超导状态的稳定性在大致上依赖于激发淬火的性质:即,纯相互作用骤冷猝灭引起长寿命的超导状态,而相骤冷导致短静脉的瞬态超导体。

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