activity
20182021
most citedUltranarrow linewidth photonic-atomic laser

2 citations · 2 across the 2 of their papers we have counts for

collaborators

6 papers

physics.atom-ph2021

High-performance, compact optical standard

Zachary L. Newman, Vincent Maurice, Connor Fredrick +6

We describe a high-performance, compact optical frequency standard based on a microfabricated Rb vapor cell and a low-noise, external cavity diode laser operating on the Rb two-pho…

physics.atom-ph2020

Miniaturized optical frequency standard for next-generation portable optical clocks

Vincent Maurice, Zachary L. Newman, Susannah Dickerson +7

Optical frequency standards, lasers stabilized to atomic or molecular transitions, are widely used in length metrology and laser ranging, provide a backbone for optical communicati…

physics.atom-ph2019

Universal methods for suppressing the light shift in atomic clocks using power modulation

V. I. Yudin, M. Yu. Basalaev, A. V. Taichenachev +8

We show that the light shift in atomic clocks can be suppressed using time variation of the interrogation field intensity. By measuring the clock output at two intensity levels, er…

physics.optics20192 cited

Ultranarrow linewidth photonic-atomic laser

Wei Zhang, Liron Stern, David Carlson +5

Lasers with high spectral purity can enable a diverse application space, including precision spectroscopy, coherent high-speed communications, physical sensing, and manipulation of…

physics.optics2018

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…

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…