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physics.optics2025

On-chip electro-optically tunable narrow linewidth Brillouin microlasers implemented in thin film lithium niobate

Chuntao Li, Jiale Deng, Xingzhao Huang +8

On-chip narrow linewidth microlasers with real-time wavelength tunability are highly desirable for various applications including precision metrology, quantum technology, and coher…

physics.optics2025

Low-loss thin-film periodically poled lithium niobate waveguides fabricated by femtosecond laser photolithography

Guanghui Zhao, Jintian Lin, Renhong Gao +10

Periodically poled lithium niobate on insulator (PPLNOI) ridge waveguides are critical photonic components for both classical and quantum information processing. However, dry etchi…

physics.optics2025

Efficient transverse multi-wave interactions up to six-wave mixing in a high-Q lithium niobate microresonator

Chuntao Li, Ni Yao, Huakang Yu +6

High-order nonlinear optical processes beyond four-wave mixing serve as fundamental tools for advancing photonic technologies, yet their practical implementation remains challengin…

physics.optics2024

Second harmonic generation with 48% conversion efficiency from cavity polygon modes in a monocrystalline lithium niobate microdisk resonator

Chao Sun, Jielei Ni, Chuntao Li +10

Thin-film lithium niobate (TFLN) based optical microresonators offer large nonlinear coefficient d_33 and high light-wave confinement, allowing highly efficient second-order optica…

physics.optics2024

Frequency stabilization based on H13C14N absorption in lithium niobate micro-disk laser

Zhen Yi, Zhihao Zhang, Jianglin Guan +8

We demonstrate an on-chip lithium niobate micro-disk laser based on hydrogen cyanide (H13C14N) gas saturation absorption method for frequency stabilization. The laser chip consists…