6 citations · 6 across the 2 of their papers we have counts for
5 papers
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…
A Kerr-microresonator optical clockwork
Tara E. Drake, Travis C. Briles, Daryl T. Spencer +8
Kerr microresonators generate interesting and useful fundamental states of electromagnetic radiation through nonlinear interactions of continuous-wave (CW) laser light. Using photo…
Kerr-microresonator solitons for accurate carrier-envelope-frequency stabilization
Travis C. Briles, Jordan R. Stone, Tara E. Drake +8
Carrier-envelope phase stabilization of optical pulses enables exquisitely precise measurements by way of direct optical-frequency synthesis, absolute optical-to-microwave phase co…