6 citations · 6 across the 3 of their papers we have counts for
9 papers · 1 filter
Conversion efficiency in Kerr microresonator optical parametric oscillators: From three modes to many modes
Jordan R. Stone, Gregory Moille, Xiyuan Lu +1
We study optical parametric oscillations in Kerr-nonlinear microresonators, revealing an intricate solution space -- parameterized by the pump-to-signal conversion efficiency -- th…
Harnessing Dispersion in Soliton Microcombs to Mitigate Thermal Noise
Jordan R. Stone, Scott B. Papp
We explore intrinsic thermal noise in soliton microcombs, revealing thermodynamic correlations induced by nonlinearity and group-velocity dispersion. A suitable dispersion design g…
Generating octave-bandwidth soliton frequency combs with compact, low-power semiconductor lasers
Travis C. Briles, Su-Peng Yu, Tara E. Drake +2
We report a comprehensive study of low-power, octave-bandwidth, single-soliton microresonator frequency combs in both the 1550 nm and 1064 nm bands. Our experiments utilize fully i…
Thermal decoherence and laser cooling of Kerr microresonator solitons
Tara E. Drake, Jordan R. Stone, Travis C. Briles +1
Thermal noise is ubiquitous in microscopic systems and in high-precision measurements. Controlling thermal noise, especially using laser light to apply dissipation, substantially a…
Direct Kerr-frequency-comb atomic spectroscopy
Liron Stern, Jordan R. Stone, Songbai Kang +8
Microresonator-based soliton frequency combs - microcombs - have recently emerged to offer low-noise, photonic-chip sources for optical measurements. Owing to nonlinear-optical phy…
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…