A Model of Dual Fabry-Perot Etalon-Based External-Cavity Tunable Laser Us...
Internal motion within pulsating pure-quartic soliton molecules in a fibe...
Enhanced light emission of germanium light-emitting-diode on 150 mm germa...
The Fabrication of GaN Nanostructures Using Cost-Effective Methods for Ap...
Negative-to-Positive Tunnel Magnetoresistance in van der Waals Fe3GeTe2/C...
Quantum Light Source Based on Semiconductor Quantum Dots: A Review
A High-Reliability RF MEMS Metal-Contact Switch Based on Al-Sc Alloy
Development of a Mode-Locked Fiber Laser Utilizing a Niobium Diselenide S...
Development of Multiple Fano-Resonance-Based All-Dielectric Metastructure...
Traffic Vibration Signal Analysis of DAS Fiber Optic Cables with Differen...
官方微信
友情链接

Low-threshold nanolasers based on miniaturized bound states in the continuum

2023-03-16

 

Author(s): Ren, YH (Ren, Yuhao); Li, PS (Li, Peishen); Liu, ZJ (Liu, Zhuojun); Chen, ZH (Chen, Zihao); Chen, YL (Chen, You-Ling); Peng, C (Peng, Chao); Liu, J (Liu, Jin)

Source: SCIENCE ADVANCES Volume: 8 Issue: 51 DOI: 10.1126/sciadv.ade8817 Published: DEC 21 2022

Abstract: The pursuit of compact lasers with low thresholds has imposed strict requirements on tight light confinements with minimized radiation losses. Bound states in the continuum (BICs) have been recently demonstrated as an effective mechanism to trap light. However, most reported BIC lasers are still bulky due to the absence of in -plane light confinement. Here, we combine BICs and photonic bandgaps to realize three-dimensional light con-finements, as referred to miniaturized BICs (mini-BICs). We demonstrate highly compact active mini-BIC resona-tors with a record high-quality (Q) factor of up to 32,500, which enables single-mode lasing with the lowest threshold of 80 W/cm2 among the reported BIC lasers. In addition, photon statistics measurements further confirm the occurrence of the stimulated emission in our devices. Our work reveals a path toward compact BIC lasers with ultralow power consumption and potentially boosts the applications in cavity quantum electro-dynamics, nonlinear optics, and integrated photonics.

Accession Number: WOS:000922847700008

PubMed ID: 36563161

Author Identifiers:

Author        Web of Science ResearcherID        ORCID Number

Chen, Zihao                  0000-0002-6125-3306

Liu, Zhuojun         HLG-8986-2023         0000-0003-2063-8071

YuHao, Ren                  0000-0002-5221-2924

Liu, Jin                  0000-0001-5727-6874

ISSN: 2375-2548

Full Text: https://www.science.org/doi/10.1126/sciadv.ade8817



关于我们
下载视频观看
联系方式
通信地址

北京市海淀区清华东路甲35号(林大北路中段) 北京912信箱 (100083)

电话

010-82304210/010-82305052(传真)

E-mail

semi@semi.ac.cn

交通地图
版权所有 中国科学院半导体研究所

备案号:京ICP备05085259-1号 京公网安备110402500052 中国科学院半导体所声明