论文标题

集体模式和Terahertz超导体的近场响应

Collective modes and terahertz near-field response of superconductors

论文作者

Sun, Zhiyuan, Fogler, M. M., Basov, D. N., Millis, Andrew J.

论文摘要

从理论上讲,我们研究了BCS型超导体的低能电磁反应,该反应着重于传播近距离光学元件可观察到的集体模式。有趣的频率和动量范围为$ω<2δ$和$ q <1/ξ$,其中$δ$是差距,$ξ$是连贯的长度。我们表明,可以使用近场技术观察到超流体等离子体,振幅(Higgs)模式,Bardasis-Schrieffer模式和Carlson-Goldman模式,尽管这些模式都没有线性夫妇与远处的场辐射。 THZ近场辐射与振幅模式的耦合需要粒子 - 孔对称性破裂,而耦合到Bardasis-Schrieffer模式并不强,并且通常更强。对于适合当前感兴趣的分层超导体的参数,卡尔森 - 金模式出现在近场反射系数中,作为子THZ频率范围内的弱特征。在两个具有纳米尺度分离的超导层的系统中,声相模式似乎是系统的反对称密度波动模式。这种模式在近场THZ响应中产生明确定义的共振峰,并与Bardasis-Schrieffer和振幅模式具有强大的抗骨骼,从而增强了它们的响应。在由许多层的准维度超导体组成的平板中,例如在高t $ _c $ cuprate化合物的样品中实现的,许多传播约瑟夫森等离子体模式的分支都可以将其与THZ搭配到近距离辐射。

We theoretically study the low energy electromagnetic response of BCS type superconductors focusing on propagating collective modes that are observable with THz near field optics. The interesting frequency and momentum range is $ω< 2Δ$ and $q < 1/ξ$ where $Δ$ is the gap and $ξ$ is the coherence length. We show that it is possible to observe the superfluid plasmons, amplitude (Higgs) modes, Bardasis-Schrieffer modes and Carlson-Goldman modes using THz near field technique, although none of these modes couple linearly to far field radiation. Coupling of THz near field radiation to the amplitude mode requires particle-hole symmetry breaking while coupling to the Bardasis-Schrieffer mode does not and is typically stronger. For parameters appropriate to layered superconductors of current interest, the Carlson-Goldman mode appears in the near field reflection coefficient as a weak feature in the sub-THz frequency range. In a system of two superconducting layers with nanometer scale separation, an acoustic phase mode appears as the antisymmetric density fluctuation mode of the system. This mode produces well defined resonance peaks in the near-field THz response and has strong anticrossings with the Bardasis-Schrieffer and amplitude modes, enhancing their response. In a slab consisting of many layers of quasi-two dimensional superconductors, realized for example in samples of high T$_c$ cuprate compounds, many branches of propagating Josephson plasmon modes are found to couple to the THz near field radiation.

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