collaborators
Showing physics.opticsShow all

5 papers · 1 filter

physics.optics2026

Self-aligned optical microcomb emerging between octave separated lasers

Grégory Moille, Pradyoth Shandilya, Jordan Stone +11

Optical frequency combs (OFCs) are frequency rulers essential for precision metrology, next generation navigation, and testing of fundamental physics. Despite intense efforts, chip…

physics.optics2025

All-Optical Noise Quenching of An Integrated Frequency Comb

Gregory Moille, Pradyoth Shandilya, Jordan Stone +2

Integrated frequency combs promise transformation of lab-based metrology into disruptive real-world applications. These microcombs are, however, sensitive to stochastic thermal flu…

physics.optics2025

All-Optical Azimuthal Trapping of Dissipative Kerr Multi-Solitons for Relative Noise Suppression

Pradyoth Shandilya, Shao-Chien Ou, Jordan Stone +4

Temporal cavity solitons, or dissipative Kerr solitons (DKS) in integrated microresonators, are essential for deployable metrology technologies. Such applications favor the lowest…

physics.optics2025

Parasitic loss in microring-waveguide coupling and its impact on wideband nonlinear photonics

Yi Sun, Daniel Pimbi, Xiyuan Lu +4

Microring resonators enable the enhancement of nonlinear frequency mixing processes, generating output fields at frequencies that widely differ from the inputs, in some cases by mo…

physics.optics2024

On-chip Kerr parametric oscillation with integrated heating for enhanced frequency tuning and control

Jordan Stone, Daron Westly, Gregory Moille +1

Nonlinear microresonators can convert light from chip-integrated sources into new wavelengths within the visible and near-infrared spectrum. For most applications, such as the inte…