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扭曲六方氮化硼中激子的巨型莫尔陷阱

Giant moiré trapping of excitons in twisted hBN.

作者信息

Li Yanshuang, Xie Xiuhua, Zeng Huan, Li Binghui, Zhang Zhenzhong, Wang Shuangpeng, Liu Jishan, Shen Dezhen

出版信息

Opt Express. 2022 Mar 28;30(7):10596-10604. doi: 10.1364/OE.450409.

Abstract

Excitons in van der Waals (vdW) stacking interfaces can be trapped in ordered moiré potential arrays giving rise to the attractive phenomena of quantum optics and bosonic many-body effects. Compared to the prevalent transition metal dichalcogenides (TMDs) systems, due to the wide bandgap and low dielectric constant, excitons in twist-stacked hexagonal boron nitride (hBN) are anticipated trapped in deeper moiré potential, which enhances the strength of interactions. However, constrained by the common low detectivity of weak light-emitting in the deep-ultraviolet (DUV) bands, the moiré excitons in twist-hBN remain elusive. Here, we report that a remarkable DUV emitting band (peak located at ∼260 nm) only emerges at the twisted stacking area of hBN, which is performed by a high collection efficiency and spatially-resolved cathodoluminescence (CL) at room temperature. Significant peak red shifting contrast to defect-bound excitons of bulk hBN indicates the giant trapping effects of moiré potential for excitons. The observation of deeply trapped excitons motivates further studies of bosonic strongly correlation physics based on the twist-hBN system.

摘要

范德华(vdW)堆叠界面中的激子可以被捕获在有序的莫尔势阵列中,从而产生量子光学和玻色子多体效应等引人注目的现象。与普遍的过渡金属二卤化物(TMDs)系统相比,由于宽带隙和低介电常数,扭曲堆叠的六方氮化硼(hBN)中的激子预计会被困在更深的莫尔势中,这增强了相互作用的强度。然而,受深紫外(DUV)波段中常见的弱发光低探测率的限制,扭曲hBN中的莫尔激子仍然难以捉摸。在此,我们报告在hBN的扭曲堆叠区域仅出现一个显著的深紫外发射带(峰值位于~260 nm),这是通过室温下的高收集效率和空间分辨阴极发光(CL)实现的。与块状hBN的缺陷束缚激子相比,显著的峰值红移表明莫尔势对激子具有巨大的捕获效应。对深度捕获激子的观察推动了基于扭曲hBN系统的玻色子强关联物理的进一步研究。

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