论文标题

轻波Terahertz对非平衡超导体相及其集体模式的量子操纵

Lightwave Terahertz Quantum Manipulation of Non-equilibrium Superconductor Phases and their Collective Modes

论文作者

Mootz, Martin, Wang, Jigang, Perakis, Ilias E.

论文摘要

我们提出了具有强烈的Terahertz(THZ)Lightwaves驱动的空间和时间相关性的非平衡超导体(SC)状态的量规不变密度矩阵描述。我们得出超导体Bloch-马克斯韦的运动方程,将安德森伪旋转模型扩展到包括库珀对质量中心运动和电磁传播效应。因此,我们描述了在载波波振荡周期期间动态相,集体模式,准粒子相干性和高非线性的量子控制,这与我们最近的实验有关。非线性超电流与直流分量通过凝结电源加速的相干光生,通过有效的轻波场动态打破平衡反转对称性。实验特征包括在平衡对称性的频率,Rabi-Higgs集体模式和准粒子相干性以及非平衡式移动冷凝物状态下,由少数循环THZ领域调谐的非平衡移动冷凝物状态。我们使用这样的光线作为振荡的加速力,可以驱动强大的非线性和各向异性准粒子种群来控制和扩大不同类别的集体模式,例如,抑制振荡,持续的振荡,持续的振荡和通过Rabi Flopping通过Rabi Flopping进行过度受压的动力学。最近可以通过求解包括自通的光 - 偶联的完整非线性量子动力学来建模最近的相位相互关系非线性光谱实验。

We present a gauge-invariant density matrix description of non-equilibrium superconductor (SC) states with spatial and temporal correlations driven by intense terahertz (THz) lightwaves. We derive superconductor Bloch--Maxwell equations of motion that extend Anderson pseudo-spin models to include the Cooper pair center-of-mass motion and electromagnetic propagation effects. We thus describe quantum control of dynamical phases, collective modes, quasi-particle coherence, and high nonlinearities during cycles of carrier wave oscillations, which relate to our recent experiments. Coherent photogeneration of a nonlinear supercurrent with dc component via condensate acceleration by an effective lightwave field dynamically breaks the equilibrium inversion symmetry. Experimental signatures include high harmonic light emission at equilibrium-symmetry-forbidden frequencies, Rabi--Higgs collective modes and quasi-particle coherence, and non-equilibrium moving condensate states tuned by few-cycle THz fields. We use such lightwaves as an oscillating accelerating force that drives strong nonlinearities and anisotropic quasi-particle populations to control and amplify different classes of collective modes, e.g., damped oscillations, persistent oscillations, and overdamped dynamics via Rabi flopping. Recent phase-coherent nonlinear spectroscopy experiments can be modeled by solving the full nonlinear quantum dynamics including self-consistent light--matter coupling.

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