论文标题
腔诱导的量子自旋液体
Cavity-induced quantum spin liquids
论文作者
论文摘要
量子自旋液体提供了高度纠缠物质量子状态的范式实例。挫败感是比更常规的磁有序状态更喜欢旋转液体的关键机制。在这里,我们建议通过利用量子磁体与光腔的量化光的耦合来激发挫败感。电磁场的量子波动与强相关的电子之间的相互作用导致局部自旋之间的可调远距离相互作用。这种空腔引起的挫败感可稳定地稳定旋转液态,该液态在相图中占据了一个广泛的区域,该区域受量身定制相互作用的范围和强度。值得注意的是,这甚至在最初的未施工系统中也发生,因为我们在方格上展示了海森伯格模型。
Quantum spin liquids provide paradigmatic examples of highly entangled quantum states of matter. Frustration is the key mechanism to favor spin liquids over more conventional magnetically ordered states. Here we propose to engineer frustration by exploiting the coupling of quantum magnets to the quantized light of an optical cavity. The interplay between the quantum fluctuations of the electro-magnetic field and the strongly correlated electrons results in a tunable long-range interaction between localized spins. This cavity-induced frustration robustly stabilizes spin liquid states, which occupy an extensive region in the phase diagram spanned by the range and strength of the tailored interaction. Remarkably, this occurs even in originally unfrustrated systems, as we showcase for the Heisenberg model on the square lattice.