论文标题
抗铁磁拓扑绝缘子中腔轴极化器的非线性水平吸引力
Nonlinear level attraction of cavity axion polariton in antiferromagnetic topological insulator
论文作者
论文摘要
腔光子和凝结物中的各种激发之间的强耦合可以增强光 - 物质相互作用的领域,并产生几个令人兴奋的子场,例如腔光力学和腔镁polariton。预计在拓扑绝缘子中出现的轴突准粒子与光强烈搭配并产生所谓的轴支北极子。在这里,我们证明在抗铁磁拓扑绝缘子的腔轴极化器中产生了无间隙水平的吸引力,这源自轴和腔的奇数共振之间的非线性相互作用。这种新的水平吸引力与传统水平的吸引力基本不同,其机制是线性耦合或耗散介导的相互作用的机制,并且与公共极性构成的强耦合引起的水平排斥也不同。我们的结果揭示了一种新的水平景点机制,并为使用空腔技术探索轴突北极星的新道路。他们有潜在的量子信息和暗物质研究应用程序。
Strong coupling between cavity photons and various excitations in condensed matters boosts the field of light-matter interaction and generates several exciting sub-fields, such as cavity optomechanics and cavity magnon polariton. Axion quasiparticles, emerging in topological insulators, were predicted to strongly couple with the light and generate the so-called axion polariton. Here, we demonstrate that there arises a gapless level attraction in cavity axion polariton of antiferromagnetic topological insulators, which originates from a nonlinear interaction between axion and the odd-order resonance of cavity. Such a novel level attraction is essentially different from conventional level attractions with the mechanism of either a linear coupling or a dissipation-mediated interaction, and also different from the level repulsion induced by the strong coupling in common polaritons. Our results reveal a new mechanism of level attractions, and open up new roads for exploring the axion polariton with cavity technologies. They have potential applications for quantum information and dark matter research.