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20192025
most citedAll-optical computing with beyond 100-GHz clock rates

4 citations · 6 across the 5 of their papers we have counts for

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physics.optics2025

Ultralow noise microwaves with free-running frequency combs and electrical feedforward

Takuma Nakamura, William Groman, Qing-Xin Ji +11

Optically generated microwave signals exhibit some of the lowest phase noise and timing jitter of any microwave-generating technology to date. The success of octave-spanning optica…

physics.optics20251 cited

Multicolor interband solitons in microcombs

Qing-Xin Ji, Hanfei Hou, Jinhao Ge +10

In microcombs, solitons can drive non-soliton-forming modes to induce optical gain. Under specific conditions, a regenerative secondary temporal pulse coinciding in time and space…

physics.optics20254 cited

All-optical computing with beyond 100-GHz clock rates

Gordon H. Y. Li, Midya Parto, Jinhao Ge +9

A computer's clock rate ultimately determines the minimum time between sequential operations or instructions. Despite exponential advances in electronic computer performance owing…

physics.optics20241 cited

Harnessing micro-Fabry-Perot reference cavities in photonic integrated circuits

Haotian Cheng, Chao Xiang, Naijun Jin +12

Compact photonic systems that offer high frequency stability and low noise are of increasing importance to applications in precision metrology, quantum computing, communication, an…

physics.optics2019

Integrated turnkey soliton microcombs operated at CMOS frequencies

Boqiang Shen, Lin Chang, Junqiu Liu +14

While soliton microcombs offer the potential for integration of powerful frequency metrology and precision spectroscopy systems, their operation requires complex startup and feedba…