论文标题

玻色粒指数和无序诱导的透明质量过渡

Bosonic Bott Index and Disorder-Induced Topological Transitions of Magnons

论文作者

Wang, X. S., Brataas, Arne, Troncoso, Roberto E.

论文摘要

我们研究了疾病对变形蜂窝铁磁体中存在的各种拓扑巨峰阶段的作用。为此,我们引入了一个玻色粒指数,以表征有限的,无序系统中木否光谱的拓扑。 Bott Index和Chern号之间的一致性在干净的限制中是数值确定的。我们证明,受拓扑保护的镁边缘状态对中度疾病具有鲁棒性,并且正如预期的那样,将其定位在强大的状态中。我们预测了疾病驱动的拓扑相变,这是电子系统中“拓扑安德森绝缘子”的宏伟类似物,该疾病导致了非平凡拓扑的出现。结合了BOTT指数和运输特性的结果,我们表明巨大的巨大巨型镁元素具有散装对应关系。我们的结果为有限和无序系统中的拓扑镁以及其他骨气激发开辟了大门。

We investigate the role of disorder on the various topological magnonic phases present in deformed honeycomb ferromagnets. To this end, we introduce a bosonic Bott index to characterize the topology of magnon spectra in finite, disordered systems. The consistency between the Bott index and Chern number is numerically established in the clean limit. We demonstrate that topologically protected magnon edge states are robust to moderate disorder and, as anticipated, localized in the strong regime. We predict a disorder-driven topological phase transition, a magnonic analog of the "topological Anderson insulator" in electronic systems, where the disorder is responsible for the emergence of the nontrivial topology. Combining the results for the Bott index and transport properties, we show that bulk-boundary correspondence holds for disordered topological magnons. Our results open the door for research on topological magnonics as well as other bosonic excitations in finite and disordered systems.

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