铜酸盐的淬火驱动光谱

IF 3.1 3区 化学 Q2 CHEMISTRY, PHYSICAL
Matteo Puviani and Dirk Manske
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引用次数: 0

摘要

铜酸盐是d波超导体,表现出丰富的相图:即使在临界温度以上,它们也具有超导波动的特征,热无序可以降低或抑制相相干性。然而,光激发可以产生相反的效果:最近的实验表明,在中红外驱动的最佳掺杂BSCCO中,相位相干性增加。时间分辨太赫兹光谱是激发和探测超导体非平衡态的强大技术,直接解决集体模式,如振幅(希格斯)振荡。在这项工作中,我们用淬火驱动光谱装置计算了铜酸盐产生的电流的全时间演化。分析傅里叶空间中响应的实时和猝灭驱动延迟时间,我们寻找高次谐波的瞬态调制的特征,以及希格斯模式,以表征基态相位。特别是,当应用于赝隙相时,这种方法可以为诱导或增加相相干性提供确凿的证据。这些结果可以为未来的实验方案铺平道路,以表征和研究超导体以及非相干相和相变,包括诱导和瞬态超导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Quench–drive spectroscopy of cuprates

Quench–drive spectroscopy of cuprates

Cuprates are d-wave superconductors which exhibit a rich phase diagram: they are characterized by superconducting fluctuations even above the critical temperature, and thermal disorder can reduce or suppress the phase coherence. However, photoexcitation can have the opposite effect: recent experiments have shown an increasing phase coherence in optimally doped BSCCO with mid-infrared driving. Time-resolved terahertz spectroscopies are powerful techniques to excite and probe the non-equilibrium states of superconductors, directly addressing collective modes, such as amplitude (Higgs) oscillations. In this work, we calculate the full time evolution of the current generated by a cuprate with a quench–drive spectroscopy setup. Analyzing the response in Fourier space with respect to both the real time and the quench–drive delay time, we look for the signature of a transient modulation of higher harmonics, as well as the Higgs mode, in order to characterize the ground state phase. In particular, this approach can provide a smoking gun for induced or increased phase coherence when applied to the pseudogap phase. These results can pave the way for future experimental schemes to characterize and study superconductors alongside incoherent phases and phase transitions, including induced and transient superconductivity.

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来源期刊
Faraday Discussions
Faraday Discussions 化学-物理化学
自引率
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发文量
259
期刊介绍: Discussion summary and research papers from discussion meetings that focus on rapidly developing areas of physical chemistry and its interfaces
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