光子集成电路
光电子学
谐振器
低语长廊波浪
光子学
量子点
波导管
纳米光子学
材料科学
光子
联轴节(管道)
光学
物理
冶金
作者
Léo J. Roche,Fridtjof Betz,Yuhui Yang,Imad Limame,Ching‐Wen Shih,Sven Burger,Stephan Reitzenstein
标识
DOI:10.1002/qute.202400195
摘要
Abstract The on‐chip resonant excitation of single quantum dots (QDs) via integrated microlasers represents an effective and scalable method for integrated quantum photonics applications based on on‐demand single‐photon emitters. In this study, the design and numerical optimization of the evanescent coupling between whispering gallery modes (WGMs) of a micropillar resonator and a nearby single‐mode ridge waveguide in the Al(Ga)As/GaAs material system are presented. In this study, such systems are examined within a wavelength range of 930 nm, which is suitable for resonant excitation of typical self‐assembled InGaAs quantum dots. In particular, the coupling and the transmitted optical power of a WGM resonator to a ridge waveguide are examined for a range of gap spacings, with the objective of optimizing the photon coupling efficiency and Q‐factor of the monolithically integrated nanophotonic system. The findings of this study enable to identify the best device parameters for subsequent device fabrication. The findings establish a foundation for the production of highly effective photonic quantum circuits through the use of WGM microlasers integrated into evanescently coupled waveguide systems, including resonantly excited single quantum dots.
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