论文标题

范德华磁铁中的自旋意义在

Spin-correlated exciton-polaritons in a van der Waals magnet

论文作者

Dirnberger, Florian, Bushati, Rezlind, Datta, Biswajit, Kumar, Ajesh, MacDonald, Allan H., Baldini, Edoardo, Menon, Vinod M.

论文摘要

光和基本激发之间的强耦合正在成为一种强大的工具,以设计固态系统的性能。与光腔相关的自旋相关激发有望控制集体量子现象,例如磁相变向,但尚未找到合适的电子共振。在这里,我们报告了$ \ textrm {nips} _3 $的强烈耦合,一个具有高度相关的电子自由度的van der wa waals antiferromagnet。以前未观察到的极性准粒子类别是由于其自旋感应的激子与微腔内的光子之间的强耦合而出现。详细的光谱分析与微观理论结合使用,为这些异国情调的磁耦合激发的起源和相互作用提供了独特的见解。我们的工作将范德华的磁铁引入了强光物理的领域,并通过空腔量子电动力学为相关电子系统设计和控制提供了途径。

Strong coupling between light and elementary excitations is emerging as a powerful tool to engineer the properties of solid-state systems. Spin-correlated excitations that couple strongly to optical cavities promise control over collective quantum phenomena such as magnetic phase transitions, but their suitable electronic resonances have yet to be found. Here we report strong light-matter coupling in $\textrm{NiPS}_3$, a van der Waals antiferromagnet with highly correlated electronic degrees of freedom. A previously unobserved class of polaritonic quasiparticles emerges from the strong coupling between its spin-correlated excitons and the photons inside a microcavity. Detailed spectroscopic analysis in conjunction with a microscopic theory provides unique insights into the origin and interactions of these exotic magnetically coupled excitations. Our work introduces van der Waals magnets to the field of strong light-matter physics and provides a path towards the design and control of correlated electron systems via cavity quantum electrodynamics.

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