论文标题

通过浮雕状态的绝热和绝热动态产生激子巩固

Exciton-coherence generation through diabatic and adiabatic dynamics of Floquet state

论文作者

Uchida, Kento, Kusaba, Satoshi, Nagai, Kohei, Ikeda, Tatsuhiko N., Tanaka, Koichiro

论文摘要

电子系统的Floquet工程是在超快时间尺度上控制量子材料特性的一种有前途的方法。到目前为止,已经通过时间和角度分辨的光电子光谱或泵探针测量技术观察到了固体中浮子状态的能量结构。但是,尚未探索在超短脉冲驱动下的光子穿衣状态的动力学方面。当光 - 摩擦相互作用进入非扰动状态时,它们的动力学对驾驶场的包膜高度敏感,因此,对它们的理解对于对量子状态的超快操纵至关重要。在这里,我们在室温下观察到单层WSE2中强烈和非共鸣的中红外场,在摄取非线性光学元件中出乎意料。与数值计算一起,我们的测量结果表明,连贯的激子发射反映了浮力状态的绝热和绝热动态。我们的结果提供了一种新的方法来探测Floquet状态的动力学,并通过驾驶场的脉冲塑造来控制量子材料。

Floquet engineering of electronic systems is a promising way of controlling quantum material properties on an ultrafast time scale. So far, the energy structure of Floquet states in solids has been observed through time and angle-resolved photoelectron spectroscopy or pump-probe measurement techniques. However, the dynamical aspects of the photon-dressed states under ultrashort pulse driving have not been explored yet. Their dynamics become highly sensitive to the envelope of the driving field when the light-matter interaction enters non-perturbative regime, and thus, understanding of them is crucial for ultrafast manipulation of quantum state. Here, we observed coherent exciton emissions under intense and non-resonant mid-infrared fields in monolayer WSe2 at room temperature, which is unexpected in perturbative nonlinear optics. Together with numerical calculations, our measurements revealed that the coherent exciton emission reflects the diabatic and adiabatic dynamics of Floquet states. Our results provide a new approach to probing the dynamics of the Floquet state and lead to control of quantum materials through pulse shaping of the driving field.

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