activity
20172021
most citedKerr-microresonator solitons for accurate carrier-envelope-frequency stabilization

6 citations · 6 across the 3 of their papers we have counts for

collaborators
Showing physics.opticsShow all

11 papers · 1 filter

physics.optics2021

Impact of Stoichiometric Silicon Nitride Growth Conditions on Dispersion Engineering of Broadband Microresonator Frequency Combs

Gregory Moille, Daron Westly, Gregory Simelgor +1

Microresonator frequency combs, or microcombs, have gained wide appeal for their rich nonlinear physics and wide range of applications. Stoichiometric silicon nitride films grown v…

physics.optics2019

Milliwatt-threshold visible-telecom optical parametric oscillation using silicon nanophotonics

Xiyuan Lu, Gregory Moille, Anshuman Singh +8

The on-chip creation of coherent light at visible wavelengths is crucial to field-level deployment of spectroscopy and metrology systems. Although on-chip lasers have been implemen…

physics.optics2019

Broadband Resonator-Waveguide Coupling for Efficient Extraction of Octave Spanning Microcombs

Gregory Moille, Qing Li, Travis C. Briles +7

Frequency combs spanning over an octave have been successfully demonstrated in Kerr nonlinear microresonators on-chip. These micro-combs rely on both engineered dispersion, to enab…

physics.optics2019

Kerr Microresonator Soliton Frequency Combs at Cryogenic Temperatures

Gregory Moille, Xiyuan Lu, Ashutosh Rao +6

We present measurements of silicon nitride nonlinear microresonators and frequency comb generation at cryogenic temperatures as low as 7~K. The resulting two orders of magnitude re…

physics.optics2019

Efficient telecom-to-visible spectral translation through ultra-low power nonlinear nanophotonics

Xiyuan Lu, Gregory Moille, Qing Li +7

The ability to spectrally translate lightwave signals in a compact, low-power platform is at the heart of the promise of nonlinear nanophotonic technologies. For example, a device…

physics.optics2018

Photonic integration of an optical atomic clock

Z. L. Newman, V. Maurice, T. E. Drake +19

Laboratory optical atomic clocks achieve remarkable accuracy (now counted to 18 digits or more), opening possibilities to explore fundamental physics and enable new measurements. H…