[1] TJ Kippenberg, AL Gaeta, M Lipson et al. Dissipative Kerr solitons in optical microresonators. Science, 361, eaan8083(2018).
[2] T Herr, V Brasch, JD Jost et al. Temporal solitons in optical microresonators. Nat Photonics, 8, 145-152(2014).
[3] SB Papp, K Beha, P Del'Haye et al. Microresonator frequency comb optical clock. Optica, 1, 10-14(2014).
[4] JQ Liu, E Lucas, AS Raja et al. Photonic microwave generation in the X- and K-band using integrated soliton microcombs. Nat Photonics, 14, 486-491(2020).
[5] WQ Wang, LR Wang, WF Zhang. Advances in soliton microcomb generation. Adv Photonics, 2, 034001(2020).
[6] Y Bai, MH Zhang, Q Shi et al. Brillouin-Kerr soliton frequency combs in an optical microresonator. Phys Rev Lett, 126, 063901(2021).
[7] S Wan, R Niu, ZY Wang et al. Frequency stabilization and tuning of breathing solitons in Si3N4 microresonators. Photon Res, 8, 1342-1349(2020).
[8] HJ Chen, QX Ji, HM Wang et al. Chaos-assisted two-octave-spanning microcombs. Nat Commun, 11, 2336(2020).
[9] Y Geng, H Zhou, XJ Han et al. Coherent optical communications using coherence-cloned Kerr soliton microcombs. Nat Commun, 13, 1070(2022).
[10] G Moille, D Westly, NG Orji et al. Tailoring broadband Kerr soliton microcombs via post-fabrication tuning of the geometric dispersion. Appl Phys Lett, 119, 121103(2021).
[11] ZQ Yuan, MD Gao, Y Yu et al. Soliton pulse pairs at multiple colours in normal dispersion microresonators. Nat Photonics, 17, 977-983(2023).
[12] RB Wu, JH Zhang, N Yao et al. Lithium niobate micro-disk resonators of quality factors above 107. Opt Lett, 43, 4116-4119(2018).
[13] MJ Yu, Y Okawachi, R Cheng et al. Raman lasing and soliton mode-locking in lithium niobate microresonators. Light Sci Appl, 9, 9(2020).
[14] YJ Zhao, XY Liu, K Yvind et al. Widely-tunable, multi-band Raman laser based on dispersion-managed thin-film lithium niobate microring resonators. Commun Phys, 6, 350(2023).
[15] GH Zhao, JT Lin, BT Fu et al. Integrated multi-color Raman Microlasers with ultra-low pump levels in single high-Q lithium niobate microdisks. Laser Photonics Rev, 2024, 2301328(2024).
[16] Z Gong, M Li, XW Liu et al. Photonic dissipation control for Kerr soliton generation in strongly Raman-active media. Phys Rev Lett, 125, 183901(2020).
[17] YC Jia, L Wang, F Chen. Ion-cut lithium niobate on insulator technology: Recent advances and perspectives. Appl Phys Rev, 8, 011307(2021).
[18] JT Lin, F Bo, Y Cheng et al. Advances in on-chip photonic devices based on lithium niobate on insulator. Photon Res, 8, 1910-1936(2020).
[19] D Zhu, LB Shao, MJ Yu et al. Integrated photonics on thin-film lithium niobate. Adv Opt Photon, 13, 242-352(2021).
[20] YW Huang, J Feng, YH Li et al. High-performance hyperentanglement generation and manipulation based on lithium niobate waveguides. Phys Rev Appl, 17, 054002(2022).
[21] GT Xue, YF Niu, XY Liu et al. Ultrabright multiplexed energy-time-entangled photon generation from lithium niobate on insulator chip. Phys Rev Appl, 15, 064059(2021).
[22] MY Xu, MB He, HG Zhang et al. High-performance coherent optical modulators based on thin-film lithium niobate platform. Nat Commun, 11, 3911(2020).
[23] C Wang, M Zhang, MJ Yu et al. Monolithic lithium niobate photonic circuits for Kerr frequency comb generation and modulation. Nat Commun, 10, 978(2019).
[24] JJ Lu, DN Puzyrev, VV Pankratov et al. Two-colour dissipative solitons and breathers in microresonator second-harmonic generation. Nat Commun, 14, 2798(2023).
[25] Y He, QF Yang, JW Ling et al. Self-starting bi-chromatic LiNbO3 soliton microcomb. Optica, 1138-1144(2019).
[26] S Wan, PY Wang, R Ma et al. Photorefraction-assisted self-emergence of dissipative Kerr solitons. Laser Photonic Rev, 18, 2300627(2024).
[27] Z Gong, XW Liu, YT Xu et al. Soliton microcomb generation at 2 μm in z-cut lithium niobate microring resonators. Opt Lett, 44, 3182-3185(2019).
[28] C Yang, S Yang, F Du et al. 1550-nm band soliton microcombs in Ytterbium-doped lithium-niobate microrings. Laser Photonics Rev, 17, 2200510(2023).
[29] JT Lin, S Farajollahi, ZW Fang et al. Electro-optic tuning of a single-frequency ultranarrow linewidth microdisk laser. Adv Photonics, 4, 036001(2022).
[30] RH Gao, BT Fu, N Yao et al. Electro-optically tunable low phase-noise microwave synthesizer in an active lithium niobate microdisk. Laser Photonics Rev, 17, 2200903(2023).
[31] BT Fu, RH Gao, JT Lin et al. Modes trimming and clustering in a weakly perturbed high-Q whispering gallery microresonator. Laser Photonics Rev, 17, 2300116(2023).
[32] S Farajollahi, ZW Fang, JT Lin et al. Multimode perturbation modeling for cavity polygon and star modes. Phys Rev A, 108, 033520(2023).
[33] JL Guan, CT Li, RH Gao et al. Monolithically integrated narrow-bandwidth disk laser on thin-film lithium niobate. Opt Laser Technol, 168, 109908(2024).
[34] Q Li, TC Briles, DA Westly et al. Stably accessing octave-spanning microresonator frequency combs in the soliton regime. Optica, 4, 193-203(2017).
[35] RH Gao, N Yao, JL Guan et al. Lithium niobate microring with ultra-high Q factor above 108. Chin Opt Lett, 20, 011902(2022).