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在确定性的恶魔点处微盘中单个量子点的增强发射。

Enhanced emission from a single quantum dot in a microdisk at a deterministic diabolical point.

作者信息

Yang Jingnan, Shi Shushu, Xie Xin, Wu Shiyao, Xiao Shan, Song Feilong, Dang Jianchen, Sun Sibai, Yang Longlong, Wang Yunuan, Ge Zi-Yong, Li Bei-Bei, Zuo Zhanchun, Jin Kuijuan, Xu Xiulai

出版信息

Opt Express. 2021 May 10;29(10):14231-14244. doi: 10.1364/OE.419740.

Abstract

We report on controllable cavity modes by controlling the backscattering by two identical scatterers. Periodic changes of the backscattering coupling between two degenerate cavity modes are observed with the changing angle between two scatterers and elucidated by a theoretical model using two-mode approximation and numerical simulations. The periodically appearing single-peak cavity modes indicate mode degeneracy at diabolical points. Interactions between single quantum dots and cavity modes are then investigated. Enhanced emission of a quantum dot with a six-fold intensity increase is obtained in a microdisk at a diabolical point. This method to control cavity modes allows large-scale integration, high reproducibility and flexible design of the size, the location, the quantity and the shape for scatterers, which can be applied for integrated photonic structures with scatterer-modified light-matter interaction.

摘要

我们报道了通过控制两个相同散射体的背散射来实现对腔模的可控性。随着两个散射体之间夹角的变化,观察到两个简并腔模之间背散射耦合的周期性变化,并通过使用双模近似的理论模型和数值模拟进行了阐释。周期性出现的单峰腔模表明在狄拉克点处存在模简并。随后研究了单量子点与腔模之间的相互作用。在微盘中的狄拉克点处,量子点的发射增强,强度增加了六倍。这种控制腔模的方法允许大规模集成、高再现性以及对散射体的尺寸、位置、数量和形状进行灵活设计,可应用于具有散射体修饰的光与物质相互作用的集成光子结构。

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