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基于纳米腔模式耦合的光纤集成可逆波长可调谐纳米线激光器

Fiber-Integrated Reversibly Wavelength-Tunable Nanowire Laser Based on Nanocavity Mode Coupling.

作者信息

Zhuge Ming-Hua, Yang Zongyin, Zhang Jianpei, Zheng Yazhi, Song Qinghai, Pang Chenlei, Liu Xu, Ullah Salman, Pan Caofeng, Raghavan Nagarajan, Zhang Xing-Hong, Li Haifeng, Ma Yaoguang, Yang Qing, Hasan Tawfique

机构信息

State Key Laboratory of Modern Optical Instrumentation, College of Optical Science and Engineering , Zhejiang University , Hangzhou 310027 , China.

Cambridge Graphene Centre , University of Cambridge , Cambridge CB3 0FA , United Kingdom.

出版信息

ACS Nano. 2019 Sep 24;13(9):9965-9972. doi: 10.1021/acsnano.9b05110. Epub 2019 Aug 14.

Abstract

As an ideal miniaturized light source, wavelength-tunable nanolasers capable of emitting a wide spectrum stimulate intense interests for on-chip optoelectronics, optical communications, and spectroscopy. However, realization of such devices remains a major challenge because of extreme difficulties in achieving continuously reversibly tunable gain media and high quality (Q)-factor resonators on the nanoscale simultaneously. Here, exploiting single bandgap-graded CdSSe NWs and a Fabry-Pérot/whispering gallery mode (FP/WGM) coupling cavity, a free-standing fiber-integrated reversibly wavelength-tunable nanolaser covering a 42 nm wide spectrum at room temperature with high stability and reproducibility is demonstrated. In addition, a 1.13 nm tuning spectral resolution is realized. The substrate-free device design enables integration in optical fiber communications and information. With reversible and wide, continuous tunability of emission color and precise control per step, our work demonstrates a general approach to nanocavity coupling affording high Q-factors, enabling an ideal miniaturized module for a broad range of applications in optics and optoelectronics, with optical fiber integration.

摘要

作为一种理想的小型化光源,能够发射宽光谱的波长可调谐纳米激光器激发了人们对片上光电子学、光通信和光谱学的浓厚兴趣。然而,由于在纳米尺度上同时实现连续可逆可调谐增益介质和高质量(Q)因子谐振器极其困难,此类器件的实现仍然是一个重大挑战。在此,利用单带隙渐变CdSSe纳米线和法布里-珀罗/回音壁模式(FP/WGM)耦合腔,展示了一种独立的光纤集成可逆波长可调谐纳米激光器,其在室温下覆盖42nm宽的光谱,具有高稳定性和可重复性。此外,实现了1.13nm的调谐光谱分辨率。无衬底器件设计能够集成到光纤通信和信息领域。凭借发射颜色的可逆、宽范围连续可调谐性以及每一步的精确控制,我们的工作展示了一种实现高Q因子纳米腔耦合的通用方法,从而能够实现一种理想的小型化模块,用于光学和光电子学中的广泛应用,并可实现光纤集成。

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