A hybrid single quantum dot coupled cavity on a CMOS-compatible SiC photonic chip for Purcell-enhanced deterministic single-photon emission

Fuente: arXiv
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Main Authors: Zhu, Yifan, Liu, Runze, Yi, Ailun, Wang, Xudong, Qin, Yuanhao, Zhao, Zihao, Zhao, Junyi, Chen, Bowen, Zhang, Xiuqi, Song, Sannian, Huo, Yongheng, Ou, Xin, Zhang, Jiaxiang
Format: Preprint
Published: 2024
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author Zhu, Yifan
Liu, Runze
Yi, Ailun
Wang, Xudong
Qin, Yuanhao
Zhao, Zihao
Zhao, Junyi
Chen, Bowen
Zhang, Xiuqi
Song, Sannian
Huo, Yongheng
Ou, Xin
Zhang, Jiaxiang
author_facet Zhu, Yifan
Liu, Runze
Yi, Ailun
Wang, Xudong
Qin, Yuanhao
Zhao, Zihao
Zhao, Junyi
Chen, Bowen
Zhang, Xiuqi
Song, Sannian
Huo, Yongheng
Ou, Xin
Zhang, Jiaxiang
contents The ability to control nonclassical light emission from a single quantum emitter by an integrated cavity may unleash new perspectives for integrated photonic quantum applications. However, coupling a single quantum emitter to cavity within photonic circuitry towards creation of the Purcell-enhanced single-photon emission is elusive due to the complexity of integrating active devices in low-loss photonic circuits. Here we demonstrate a hybrid micro-ring resonator (HMRR) coupled with self-assembled quantum dots (QDs) for cavity-enhanced deterministic single-photon emission. The HMRR cavity supports whispering-gallery modes with quality factors up to 7800. By further introducing a micro-heater, we show that the photon emission of QDs can be locally and dynamically tuned over one free spectral ranges of the HMRR (~4 nm). This allows precise tuning of individual QDs in resonance with the cavity modes, thereby enhancing single-photon emission with a Purcell factor of about 4.9. Our results on the hybrid integrated cavities coupled with two-level quantum emitters emerge as promising devices for chip-based scalable photonic quantum applications.
format Preprint
id arxiv_https___arxiv_org_abs_2411_06677
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A hybrid single quantum dot coupled cavity on a CMOS-compatible SiC photonic chip for Purcell-enhanced deterministic single-photon emission
Zhu, Yifan
Liu, Runze
Yi, Ailun
Wang, Xudong
Qin, Yuanhao
Zhao, Zihao
Zhao, Junyi
Chen, Bowen
Zhang, Xiuqi
Song, Sannian
Huo, Yongheng
Ou, Xin
Zhang, Jiaxiang
Quantum Physics
Optics
The ability to control nonclassical light emission from a single quantum emitter by an integrated cavity may unleash new perspectives for integrated photonic quantum applications. However, coupling a single quantum emitter to cavity within photonic circuitry towards creation of the Purcell-enhanced single-photon emission is elusive due to the complexity of integrating active devices in low-loss photonic circuits. Here we demonstrate a hybrid micro-ring resonator (HMRR) coupled with self-assembled quantum dots (QDs) for cavity-enhanced deterministic single-photon emission. The HMRR cavity supports whispering-gallery modes with quality factors up to 7800. By further introducing a micro-heater, we show that the photon emission of QDs can be locally and dynamically tuned over one free spectral ranges of the HMRR (~4 nm). This allows precise tuning of individual QDs in resonance with the cavity modes, thereby enhancing single-photon emission with a Purcell factor of about 4.9. Our results on the hybrid integrated cavities coupled with two-level quantum emitters emerge as promising devices for chip-based scalable photonic quantum applications.
title A hybrid single quantum dot coupled cavity on a CMOS-compatible SiC photonic chip for Purcell-enhanced deterministic single-photon emission
topic Quantum Physics
Optics
url https://arxiv.org/abs/2411.06677