most citedPhotonic chip-based low noise microwave oscillator

9 citations · 17 across the 7 of their papers we have counts for

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physics.optics2024

Ultralow-loss spiral resonators for precise LiDAR

Osama Terra, Warren Jin, Hussein Kotb +2

Swept laser interferometry is an extremely powerful solution embedded in several recent technologies such as absolute distance measurement, light detection and ranging, optical fre…

physics.optics20241 cited

Investigation of Q degradation in low-loss Si3N4 from heterogeneous laser integration

Joel Guo, Chao Xiang, Warren Jin +5

High-performance, high-volume-manufacturing Si3N4 photonics requires extremely low waveguide losses augmented with heterogeneously integrated lasers for applications beyond traditi…

physics.optics20243 cited

Dispersive-wave-agile optical frequency division

Qing-Xin Ji, Wei Zhang, Peng Liu +10

The remarkable frequency stability of resonant systems in the optical domain (optical cavities and atomic transitions) can be harnessed at frequency scales accessible by electronic…

physics.optics20239 cited

Photonic chip-based low noise microwave oscillator

Igor Kudelin, William Groman, Qing-Xin Ji +26

Numerous modern technologies are reliant on the low-phase noise and exquisite timing stability of microwave signals. Substantial progress has been made in the field of microwave ph…

physics.optics20232 cited

Soliton pulse pairs at multiple colors in normal dispersion microresonators

Zhiquan Yuan, Maodong Gao, Yan Yu +7

Soliton microcombs are helping to advance the miniaturization of a range of comb systems. These combs mode lock through the formation of short temporal pulses in anomalous dispersi…

physics.optics2023

Engineered zero-dispersion microcombs using CMOS-ready photonics

Qing-Xin Ji, Warren Jin, Lue Wu +14

Normal group velocity dispersion (GVD) microcombs offer high comb line power and high pumping efficiency compared to bright pulse microcombs. The recent demonstration of normal GVD…