Chip-scale spontaneous quasi-phase matched second harmonic generation in a micro-racetrack resonator

被引:0
|
作者
Tingge Yuan
Jiangwei Wu
Yi’an Liu
Xiongshuo Yan
Haowei Jiang
Hao Li
Zhaokang Liang
Qiang Lin
Yuping Chen
Xianfeng Chen
机构
[1] Shanghai Jiao Tong University,State Key Laboratory of Advanced Optical Communication Systems and Networks, School of Physics and Astronomy
[2] Shandong Normal University,Collaborative Innovation Center of Light Manipulations and Applications
[3] University of Rochester,Department of Electrical and Computer Engineering
关键词
lithium niobate on insulator; quasi-phase matching; second harmonic generation;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, we demonstrate efficient spontaneous quasi-phase matched (SQPM) second harmonic generation (SHG) in a micro-racetrack resonator on X-cut thin film lithium niobate. Our approach does not involve poling, but exploits the anisotropy of the crystals to allow the phase-matching condition to be fulfilled spontaneously as the TE-polarized light circulates in a specifically designed racetrack resonator. In experiment, normalized on-chip conversion efficiencies of 1.01 × 10−4/W and 0.43 × 10−4/W are achieved by 37th-order and 111th-order SQPM, respectively. The configurable SQPM will benefit the application of nonlinear frequency conversion and quantum source generation in chip-scale integrated photonics compatible with standard CMOS fabrication processes.
引用
收藏
相关论文
共 50 条
  • [21] Study of broadband second harmonic generation based on random quasi-phase matching
    Wang, Sijia
    Zhong, Kai
    Li, Fangjie
    Qiao, Hongzhan
    Zhang, Xianzhong
    Zheng, Yizhe
    Li, Xinqi
    Gegen, Tana
    Li, Jining
    Xu, Degang
    Yao, Jianquan
    QUANTUM AND NONLINEAR OPTICS IX, 2022, 12323
  • [22] Second harmonic generation by quasi-phase matching in a lithium niobate thin film
    Zhang, Honghu
    LI, Qingyun
    Zhu, Houbin
    Cai, Lutong
    Hu, H. U., I
    OPTICAL MATERIALS EXPRESS, 2022, 12 (06) : 2252 - 2259
  • [23] Theoretical analysis of optimal quasi-phase matched second harmonic generation waveguide structure in LiTaO3 substrates
    P. F. Hu
    T. C. Chong
    L. P. Shi
    W. X. Hou
    Optical and Quantum Electronics, 1999, 31 : 337 - 349
  • [24] Theoretical analysis of optimal quasi-phase matched second harmonic generation waveguide structure in LiTaO3 substrates
    Hu, PF
    Chong, TC
    Shi, LP
    Hou, WX
    OPTICAL AND QUANTUM ELECTRONICS, 1999, 31 (04) : 337 - 349
  • [25] Broadband Quasi-Phase-Matched Harmonic Generation in an On-Chip Monocrystalline Lithium Niobate Microdisk Resonator
    Lin, Jintian
    Yao, Ni
    Hao, Zhenzhong
    Zhang, Jianhao
    Mao, Wenbo
    Wang, Min
    Chu, Wei
    Wu, Rongbo
    Fang, Zhiwei
    Qiao, Lingling
    Fang, Wei
    Bo, Fang
    Cheng, Ya
    PHYSICAL REVIEW LETTERS, 2019, 122 (17)
  • [26] Multiple scale analysis of quasi-phase-matched quadratic dielectrics for second harmonic generation
    C. de Angelis
    F. Gringoli
    G.F. Nalesso
    Optical and Quantum Electronics, 2001, 33 : 1149 - 1161
  • [27] Multiple scale analysis of quasi-phase-matched quadratic dielectrics for second harmonic generation
    de Angelis, C
    Gringoli, F
    Nalesso, GF
    OPTICAL AND QUANTUM ELECTRONICS, 2001, 33 (11) : 1149 - 1161
  • [28] POLARIZATION INSENSITIVE QUASI-PHASE-MATCHED SECOND HARMONIC GENERATION
    Song, Xiao-Shi
    Wang, Qin
    Yu, Zi-Yan
    Xu, Fei
    Lu, Yan-Qing
    JOURNAL OF NONLINEAR OPTICAL PHYSICS & MATERIALS, 2011, 20 (02) : 129 - 136
  • [29] Quasi-phase matched second harmonic generation in periodically poled Rb-doped KTiOPO4 ridge waveguide
    Kores, Cristine C.
    Mutter, Patrick
    Kianirad, Hoda
    Canalias, Carlota
    Laurell, Fredrik
    OPTICS EXPRESS, 2018, 26 (25): : 33142 - 33147
  • [30] Flat broadband wavelength conversion based on cascaded second-harmonic generation and difference frequency generation in segmented quasi-phase matched gratings
    Liu, Tao
    Qi, Yulin
    Che, Linlin
    Li, Baogang
    Yu, Song
    Gu, Wanyi
    JOURNAL OF MODERN OPTICS, 2012, 59 (07) : 650 - 657