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Momentum-resolved analysis of condensate dynamic and Higgs oscillations in quenched superconductors with time-resolved ARPES

机译:淬火超导体中淬火式动态和HIGGS振荡的动量分辨分析,时间分辨ARPES

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摘要

Higgs oscillations in nonequilibrium superconductors provide a unique tool to obtain information about the underlying order parameter. Several properties like the absolute value, existence of multiple gaps, and the symmetry of the order parameter can be encoded in the Higgs oscillation spectrum. Studying Higgs oscillations with time-resolved angle-resolved photoemission spectroscopy (ARPES) has the advantage over optical measurements that a momentum-resolved analysis of the condensate dynamic is possible. In this paper, we investigate the time-resolved spectral function measured in ARPES for different quench protocols. We find that analyzing amplitude oscillations of the ARPES intensity in the whole Brillouin zone allows to understand how the condensate dynamic contributes to the emerging of collective Higgs oscillations. Furthermore, by evaluating the phase of these oscillations, the symmetry deformation dynamic of the condensate can be revealed, which gives insight about the ground state symmetry of the system. With such an analysis, time-resolved ARPES experiments might be used in the future as a powerful tool in the field of Higgs spectroscopy.
机译:HIGGS振荡在非QuiBiRibium超导体中提供了一个独特的工具,以获取有关底层顺序参数的信息。几个属性,如绝对值,多个间隙的存在,以及订单参数的对称性可以在HIGGS振荡频谱中编码。使用时间分辨角度分辨的光曝光光谱(ARPE)研究HIGGS振荡具有在光学测量中的优点,即可能的冷凝物动态的动量分辨分析。在本文中,我们研究了在不同骤冷协议中测量的时间分辨光谱函数。我们发现,分析整个布里渊区的ARPES强度的幅度振荡允许了解凝结物动力如何导致集体HIGGS振荡的新兴。此外,通过评估这些振荡的相位,可以揭示冷凝物的对称变形动态,这给出了对系统的地面对称性的洞察力。利用这种分析,将来可能会使用时间分辨的ARPES实验作为HIGGS光谱技术领域的强大工具。

著录项

  • 来源
    《Physical review》 |2020年第22期|224510.1-224510.13|共13页
  • 作者单位

    Max Planck Institute for Solid State Research 70569 Stuttgart Germany;

    Theoretical Division Los Alamos National Laboratory Los Alamos New Mexico 87545 USA;

    Max Planck Institute for Solid State Research 70569 Stuttgart Germany;

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