Research Progress in Nonlinear Optics of Thin-Film Lithium Niobate Micro/nano Structures (Invited)

被引:0
作者
Deng Li [1 ]
Gao Renhong [1 ]
Guan Jianglin [1 ]
Li Chuntao [1 ]
Zhao Guanghui [1 ]
Li Minghui [1 ]
Qiao Qian [1 ]
机构
[1] East China Normal Univ, Sch Phys & Elect Sci, Extreme Optoelectromech Lab, Shanghai 200241, Peoples R China
关键词
lithium niobate; optical microresonator; waveguide; nonlinear optics; laser; quantum optics; photonic integration; SUM-FREQUENCY GENERATION; 2ND-HARMONIC GENERATION; MICRORING RESONATORS; HYBRID SILICON; WAVE-GUIDE; Z-SCAN; INSULATOR MICRODISK; GRATING COUPLERS; CHIP; LASER;
D O I
10.3788/LOP241337
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Thin-film lithium niobate (TFLN) micro/nano-structures allowing strong light field confinement to boost the interaction between light and matter, shows great potentials for cutting-edge researchs and high-tech applications for high speed optical communications, high-performance optical computation, integrated photonics, and integrated quantum information processing, etc. This article reviews the basic principles, manufacturing technical advances, and the latest progress of TFLN microdevices based on microresonators and waveguides, including various applications ranging from frequency conversion, electro-optic modulation, optical frequency combs to microwave-to-optical wave conversion, quantum photonics, and microlasers. The application of these techniques has greatly promoted the development of large-scale integrated optoelectronic circuits and quantum networks. In addition, this article gives a perspective on potential applications in the future.
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页数:33
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共 285 条
[81]   A Theoretical Study on Mid-Infrared Difference Frequency Generation Based on Periodically Poled Thin-Film LiNbO3 [J].
Jia, Runze ;
Liu, Meihong ;
Liu, Jiamin ;
Hua, Pingrang ;
Zhang, Delong .
PHOTONICS, 2023, 10 (04)
[82]   Integrated Photonics Based on Rare-Earth Ion-Doped Thin-Film Lithium Niobate [J].
Jia, Yuechen ;
Wu, Jiangwei ;
Sun, Xiaoli ;
Yan, Xiongshuo ;
Xie, Ranran ;
Wang, Lei ;
Chen, Yuping ;
Chen, Feng .
LASER & PHOTONICS REVIEWS, 2022, 16 (09)
[83]   Ion-cut lithium niobate on insulator technology: Recent advances and perspectives [J].
Jia, Yuechen ;
Wang, Lei ;
Chen, Feng .
APPLIED PHYSICS REVIEWS, 2021, 8 (01)
[84]   Fast response of photorefraction in lithium niobate microresonators [J].
Jiang, Haowei ;
Luo, Rui ;
Liang, Hanxiao ;
Chen, Xianfeng ;
Chen, Yuping ;
Lin, Qiang .
OPTICS LETTERS, 2017, 42 (17) :3267-3270
[85]   Chip-scale cavity optomechanics in lithium niobate [J].
Jiang, Wei C. ;
Lin, Qiang .
SCIENTIFIC REPORTS, 2016, 6
[86]   Rare earth-implanted lithium niobate: Properties and on-chip integration [J].
Jiang, Xiaodong ;
Pak, Dongmin ;
Nandi, Arindam ;
Xuan, Yi ;
Hosseini, Mandi .
APPLIED PHYSICS LETTERS, 2019, 115 (07)
[87]   Chip-based silica microspheres for cavity optomechanics [J].
Jiang, Xuefeng ;
Wang, Min ;
Kuzyk, Mark C. ;
Oo, Thein ;
Long, Gui-Lu ;
Wang, Hailin .
OPTICS EXPRESS, 2015, 23 (21) :27260-27265
[88]   Thin-Film Lithium Niobate Optical Modulators with an Extrapolated Bandwidth of 170 GHz [J].
Juneghani, Farzaneh Arab ;
Vazimali, Milad Gholipour ;
Zhao, Jie ;
Chen, Xi ;
Le, Son Thai ;
Chen, Haoshuo ;
Ordouie, Ehsan ;
Fontaine, Nicolas K. ;
Fathpour, Sasan .
ADVANCED PHOTONICS RESEARCH, 2023, 4 (01)
[89]   High-efficiency chirped grating couplers on lithium niobate on insulator [J].
Kang, Shuting ;
Zhang, Ru ;
Hao, Zhenzhong ;
Jia, Di ;
Gao, Feng ;
Bo, Fang ;
Zhang, Guoquan ;
Xu, Jingjun .
OPTICS LETTERS, 2020, 45 (24) :6651-6654
[90]   Realization of alignment-tolerant grating couplers for z-cut thin-film lithium niobate [J].
Kar, Arunita ;
Bahadori, Meisam ;
Gong, Songbin ;
Goddard, Lynford L. .
OPTICS EXPRESS, 2019, 27 (11) :15856-15867