论文标题
使用时间分辨的谐振非弹性X射线散射见证轻驱动纠缠
Witnessing Light-Driven Entanglement using Time-Resolved Resonant Inelastic X-Ray Scattering
论文作者
论文摘要
量子材料中表征和控制纠缠对于下一代量子技术的发展至关重要。但是,在理论上和实验上都具有挑战性,定义可量化的纠缠纠缠的功绩。以平衡,可以通过从光谱可观察物中提取纠缠证人来诊断纠缠的存在,而这种方法的非平衡延伸可能会导致发现新型动力学现象。在这里,我们提出了一种系统的方法来量化时间依赖性的量子渔民信息和量子材料的瞬时状态的纠缠深度,并具有时间分辨的谐振无弹性X射线散射。以四分之一填充的扩展哈伯德模型为例,我们基于这种方法的效率,并由于靠近相边界而预测了光增强的多体纠缠。我们的工作为通过超快的光谱测量值实验见证和控制纠缠的纠缠奠定了基础。
Characterizing and controlling entanglement in quantum materials is crucial for the development of next-generation quantum technologies. However, defining a quantifiable figure of merit for entanglement in macroscopic solids is theoretically and experimentally challenging. At equilibrium the presence of entanglement can be diagnosed by extracting entanglement witnesses from spectroscopic observables and a nonequilibrium extension of this method could lead to the discovery of novel dynamical phenomena. Here, we propose a systematic approach to quantify the time-dependent quantum Fisher information and entanglement depth of transient states of quantum materials with time-resolved resonant inelastic x-ray scattering. Using a quarter-filled extended Hubbard model as an example, we benchmark the efficiency of this approach and predict a light-enhanced many-body entanglement due to the proximity to a phase boundary. Our work sets the stage for experimentally witnessing and controlling entanglement in light-driven quantum materials via ultrafast spectroscopic measurements.