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20162021
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physics.optics2021

A squeezed quantum microcomb on a chip

Zijiao Yang, Mandana Jahanbozorgi, Dongin Jeong +4

The optical microresonator-based frequency comb (microcomb) provides a versatile platform for nonlinear physics studies and has wide applications ranging from metrology to spectros…

physics.optics2018

Kerr-microresonator solitons from a chirped background

Daniel C. Cole, Jordan R. Stone, Miro Erkintalo +4

We demonstrate protected single-soliton formation and operation in a Kerr microresonator using a phase-modulated pump laser. Phase modulation gives rise to spatially varying effect…

physics.optics2018

Imaging soliton dynamics in optical microcavities

Xu Yi, Qi-Fan Yang, Ki Youl Yang +1

Solitons are self-sustained wavepackets that occur in many physical systems. Their recent demonstration in optical microresonators has provided a new platform for study of nonlinea…

physics.optics2017

Counter-propagating solitons in microresonators

Qi-Fan Yang, Xu Yi, Ki Youl Yang +1

Solitons occur in many physical systems when a nonlinearity compensates wave dispersion. Their recent formation in microresonators opens a new research direction for nonlinear opti…

physics.optics2017

Towards visible soliton microcomb generation

Seung Hoon Lee, Dong Yoon Oh, Qi-Fan Yang +7

Frequency combs have applications that extend from the ultra-violet into the mid-infrared bands. Microcombs, a miniature and often semiconductor-chip-based device, can potentially…

physics.optics2016

Spatial-mode-interaction-induced dispersive-waves and their active tuning in microresonators

Qi-Fan Yang, Xu Yi, Ki Youl Yang +1

The nonlinear propagation of optical pulses in dielectric waveguides and resonators provides a laboratory to investigate a wide range of remarkable interactions. Many of the result…