论文标题
高t $ _c $超导体中量子相变的高谐波光谱
High harmonic spectroscopy of quantum phase transitions in a high-T$_c$ superconductor
论文作者
论文摘要
我们报告通过高谐波产生观察到的高温超导体YBCO中量子相变的新的非线性光学特征。虽然材料的线性光学响应在整个相变冷却时在很大程度上没有变化,但非线性光学响应敏感地烙印两个关键点,一个在铜的临界温度下,伴随着铜的临界温度,而在超导阶段的表面谐波产量的指数增长,以及另一个关键点,这标志着从奇怪的金属到pseudo pseudo pseudo gap apse pseud pepeo gap gap a。为了揭示潜在的显微镜量子动力学,开发了一种新型的强场准 - 哈伯德模型,该模型描述了取决于库珀对形成的测得的光学响应。此外,新理论提供了对载体散射动力学的见解,并允许区分超导,伪间隙和奇怪的金属相。非线性光学响应和微观动力学之间的直接连接为研究相关材料中的量子相变提供了强大的新方法。进一步的含义是对复杂的量子相,轻型杂种以及光学量子计算的应用的轻波控制。
We report on the new non--linear optical signatures of quantum phase transitions in the high-temperature superconductor YBCO, observed through high harmonic generation. While the linear optical response of the material is largely unchanged when cooling across the phase transitions, the nonlinear optical response sensitively imprints two critical points, one at the critical temperature of the cuprate with the exponential growth of the surface harmonic yield in the superconducting phase, and another critical point, which marks the transition from strange metal to pseudo gap phase. To reveal the underlying microscopic quantum dynamics, a novel strong-field quasi-Hubbard model was developed, which describes the measured optical response dependent on the formation of Cooper pairs. Further, the new theory provides insight into the carrier scattering dynamics and allows to differentiate between the superconducting, pseudo gap, and strange metal phases. The direct connection between non--linear optical response and microscopic dynamics provides a powerful new methodology to study quantum phase transitions in correlated materials. Further implications are light-wave control over intricate quantum phases, light-matter hybrids, and application for optical quantum computing.