activity
20172022
most citedAn ultrastable silicon cavity in a continuously operating closed-cycle cryostat at 4 K

127 citations · 194 across the 5 of their papers we have counts for

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Showing physics.atom-phShow all

7 papers · 1 filter

physics.atom-ph2020

Precision Metrology Meets Cosmology: Improved Constraints on Ultralight Dark Matter from Atom-Cavity Frequency Comparisons

Colin J. Kennedy, Eric Oelker, John M. Robinson +6

We conduct frequency comparisons between a state-of-the-art strontium optical lattice clock, a cryogenic crystalline silicon cavity, and a hydrogen maser to set new bounds on the c…

physics.atom-ph202014 cited

Frequency Ratio Measurements with 18-digit Accuracy Using a Network of Optical Clocks

Boulder Atomic Clock Optical Network, Collaboration, : +35

Atomic clocks occupy a unique position in measurement science, exhibiting higher accuracy than any other measurement standard and underpinning six out of seven base units in the SI…

physics.atom-ph2020

A tweezer clock with half-minute atomic coherence at optical frequencies and high relative stability

Aaron W. Young, William J. Eckner, William R. Milner +6

The preparation of large, low-entropy, highly coherent ensembles of identical quantum systems is foundational for many studies in quantum metrology, simulation, and information. He…

physics.atom-ph2019

Demonstration of a time scale based on a stable optical carrier

William R. Milner, John M. Robinson, Colin J. Kennedy +13

We demonstrate a time scale based on a phase stable optical carrier that accumulates an estimated time error of ps over 34 days of operation. This all-optical time scale…

physics.atom-ph2019

JILA SrI Optical Lattice Clock with Uncertainty of

Tobias Bothwell, Dhruv Kedar, Eric Oelker +5

We report on an improved systematic evaluation of the JILA SrI optical lattice clock, achieving a nearly identical systematic uncertainty compared to the previous strontium accurac…

physics.atom-ph2019

Seconds-scale coherence in a tweezer-array optical clock

Matthew A. Norcia, Aaron W. Young, William J. Eckner +3

Optical clocks based on atoms and ions achieve exceptional precision and accuracy, with applications to relativistic geodesy, tests of relativity, and searches for dark matter. Ach…