论文标题

在范德华杂音方面的磁量优化耦合

Magnon-exciton proximity coupling at a van der Waals heterointerface

论文作者

Gloppe, Arnaud, Onga, Masaru, Hisatomi, Ryusuke, Imamoglu, Atac, Nakamura, Yasunobu, Iwasa, Yoshihiro, Usami, Koji

论文摘要

自旋和光子系统是现代信息设备和新兴量子技术的核心。在半导体和磁性晶体中的集体自旋激发(磁子)中的电子孔对(激子)之间的相互作用将桥接这些异质系统,从而利用其在新型互连设备中的单个资产。在这里,我们报告了磁性薄膜和原子上薄的半导体之间的界面处的磁量耦合。我们的方法盟友在Yttrium Iron Garnet(YIG)中托管的长寿镁含量在过渡金属二甲基化的薄片中,摩西$ _2 $。镁质在激子上诱导了动态山谷zeeman效应,该效应由界面交换相互作用所构成。这种新生的混合动力系统为微波和光学区域之间的信息转移提供了新的机会。

Spin and photonic systems are at the heart of modern information devices and emerging quantum technologies. An interplay between electron-hole pairs (excitons) in semiconductors and collective spin excitations (magnons) in magnetic crystals would bridge these heterogeneous systems, leveraging their individual assets in novel interconnected devices. Here, we report the magnon-exciton coupling at the interface between a magnetic thin film and an atomically-thin semiconductor. Our approach allies the long-lived magnons hosted in a film of yttrium iron garnet (YIG) to strongly-bound excitons in a flake of a transition metal dichalcogenide, MoSe$_2$. The magnons induce on the excitons a dynamical valley Zeeman effect ruled by interfacial exchange interactions. This nascent class of hybrid system suggests new opportunities for information transduction between microwave and optical regions.

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