论文标题
通过量子波动的腔体纠缠
Cavity Light-Matter Entanglement through Quantum Fluctuations
论文作者
论文摘要
光与物质之间的杂交构成了对量子材料控制腔的基础。在这项工作中,我们研究了通过数值精确的溶液和扰动分析膨胀的相互作用的无旋转费物进行的XXZ量子链的空腔。我们发现两个重要的影响:(i)物质系统的特定量子波动在实现光与物质之间的纠缠方面起着关键作用; (ii)反过来,轻质纠缠是通过腔体修饰电子特性的关键要素。我们假设那些物质运算符的量子波动是腔模式夫妇对地面纠缠的一般先决条件。讨论了我们的发现对光结合相,相关系统中的腔体修饰相变的含义,以及通过kubo响应函数测量光纠缠的测量。
The hybridization between light and matter forms the basis to achieve cavity control over quantum materials. In this work we investigate a cavity coupled to an XXZ quantum chain of interacting spinless fermions by numerically exact solutions and perturbative analytical expansions. We find two important effects: (i) Specific quantum fluctuations of the matter system play a pivotal role in achieving entanglement between light and matter; and (ii) in turn, light-matter entanglement is the key ingredient to modify electronic properties by the cavity. We hypothesize that quantum fluctuations of those matter operators to which the cavity modes couple are a general prerequisite for light-matter entanglement in the groundstate. Implications of our findings for light-matter-entangled phases, cavity-modified phase transitions in correlated systems, and measurement of light-matter entanglement through Kubo response functions are discussed.