Erbium-ytterbium co-doped lithium niobate single-mode microdisk laser with an ultralow threshold of 1 μW

被引:0
|
作者
李明慧 [1 ,2 ]
高仁宏 [1 ,2 ]
黎春桃 [3 ,4 ]
管江林 [3 ,4 ]
张海粟 [3 ]
林锦添 [1 ,2 ]
赵光辉 [1 ,5 ]
乔迁 [1 ,5 ]
汪旻 [2 ]
乔玲玲 [1 ]
邓莉 [2 ]
程亚 [1 ,2 ,3 ,6 ,7 ]
机构
[1] State Key Laboratory of High Field Laser Physics and CAS Center for Excellence in Ultra-Intense Laser Science,Shanghai Institute of Optics and Fine Mechanics (SIOM],Chinese Academy of Sciences (CAS]
[2] Center of Materials Science and Optoelectronics Engineering,University of Chinese Academy of Sciences
[3] XXL—The Extreme Optoelectromechanics Laboratory,School of Physics and Electronic Science,East China Normal University
[4] State Key Laboratory of Precision Spectroscopy,East China Normal University
[5] School of Physical Science and Technology,ShanghaiTech University
[6] Shanghai Research Center for Quantum Sciences  7. Hefei National Laboratory
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TN248 [激光器];
学科分类号
0803 ; 080401 ; 080901 ;
摘要
We demonstrate single-mode microdisk lasers in the telecom band with ultralow thresholds on erbium-ytterbium co-doped thin-film lithium niobate(TFLN). The active microdisk was fabricated with high-Q factors by photolithography-assisted chemomechanical etching. Thanks to the erbium-ytterbium co-doping providing high optical gain, the ultralow loss nanostructuring, and the excitation of high-Q coherent polygon modes, which suppresses multimode lasing and allows high spatial mode overlap between pump and lasing modes, single-mode laser emission operating at 1530 nm wavelength was observed with an ultralow threshold, under a 980-nm-band optical pump. The threshold was measured as low as 1 μW, which is one order of magnitude smaller than the best results previously reported in single-mode active TFLN microlasers. The conversion efficiency reaches 4.06 × 10-3, which is also the highest value reported in single-mode active TFLN microlasers.
引用
收藏
页码:54 / 58
页数:5
相关论文
共 50 条
  • [31] Bose-Einstein condensation of photons in an erbium-ytterbium co-doped fiber cavity
    Weill, Rafi
    Bekker, Alexander
    Levit, Boris
    Fischer, Baruch
    NATURE COMMUNICATIONS, 2019, 10 (1)
  • [32] Simulations of radiation effects on erbium-ytterbium co-doped fiber amplifiers for space applications
    Ma, Chengqi
    Zhang, Yating
    Jin, Lufan
    Ma, Zhenzhen
    Tang, Xin
    Li, Jiahui
    Shi, Wei
    Yao, Jianquan
    OPTICAL ENGINEERING, 2020, 59 (09)
  • [33] Erbium-Ytterbium Co-Doped Fiber and Its Amplification Characteristics in L-Band
    He, Le
    Yin, Xiaoke
    Chen, Yang
    Chu, Yingbo
    Li, Jinyan
    Zhongguo Jiguang/Chinese Journal of Lasers, 2024, 51 (13):
  • [34] The microstructure of erbium-ytterbium co-doped oxyfluoride glass-ceramic optical fibers
    Augustyn, Elzbieta
    Zelechower, Michal
    Stroz, Danuta
    Chraponski, Jacek
    OPTICAL MATERIALS, 2012, 34 (06) : 944 - 950
  • [35] Extractable energy from erbium-ytterbium co-doped pulsed fiber amplifiers and lasers
    Sintov, Yoav
    Glick, Yaakov
    Koplowitch, Tomer
    Nafcha, Yehuda
    OPTICS COMMUNICATIONS, 2008, 281 (05) : 1162 - 1178
  • [36] Experimental and theoretical analysis on pump spectral propriety of single frequency Erbium-Ytterbium co-doped fiber amplifier
    Bai, Xiaolei
    Wang, Meng
    Yang, Yuxing
    Liu, Zhen
    Jia, Weiguo
    JOURNAL OF PHYSICS COMMUNICATIONS, 2021, 5 (01): : 1 - 11
  • [37] High-efficiency single-mode erbium-doped lithium niobate microring laser with milliwatt output power
    Sun, Chao
    Liang, Youting
    Liu, Jian
    Zhou, Yuan
    Zhang, Zhihao
    Chen, Jinming
    Liu, Zhaoxiang
    Fang, Zhiwei
    Wang, Min
    Zhang, Haisu
    Cheng, Ya
    OPTICS LETTERS, 2024, 49 (24) : 6996 - 6999
  • [38] 100-W level single-mode ytterbium-free erbium fiber laser
    Michaud, Louis-Charles
    Veilleux, Catherine
    Bilodeau, Guillaume
    Gilbert-Paquet, Olivier
    Lebel-Cormier, Marie-Anne
    Lemieux-Tanguay, Maxime
    Pelletier-Ouellet, Samantha
    Paradis, Pascal
    Bellec, Matthieu
    Gregoire, Nicolas
    Morency, Steeve
    Messaddeq, Younes
    Bernier, Martin
    OPTICS LETTERS, 2021, 46 (10) : 2553 - 2556
  • [39] Numerical simulation of erbium-ytterbium co-doped waveguide amplifiers by wavelet-based FDTD
    Chen, HY
    Liu, YZ
    OPTOELECTRONIC DEVICES AND INTEGRATION, PTS 1 AND 2, 2005, 5644 : 516 - 519
  • [40] Q-switched Cladding Pumped Erbium-Ytterbium Co-doped Fiber Laser with Molybdenum Disulfide Saturable Absorber
    Babar, M.
    Harun, S. W.
    Yasin, M.
    NONLINEAR OPTICS QUANTUM OPTICS-CONCEPTS IN MODERN OPTICS, 2018, 49 (3-4): : 277 - 283