62 citations · 109 across the 5 of their papers we have counts for
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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…
Coupling atoms to cavities with narrow linewidth optical transitions: Applications to frequency metrology
Matthew A. Norcia
Narrow linewidth optical atomic transitions provide a valuable resource for frequency metrology, and form the basis of today's most precise and accurate clocks. Recent experiments…
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…
A Robust Narrow-Line Magneto-Optical Trap using Adiabatic Transfer
Juan A. Muniz, Matthew A. Norcia, Julia R. K. Cline +1
We characterize the properties of a new form of magneto-optical trap (MOT) that relies on non-equilibrium population dynamics associated with narrow-linewidth optical transitions.…
Role of atoms in atomic gravitational-wave detectors
Matthew A. Norcia, Julia R. K. Cline, James K. Thompson
Recently, it has been proposed that space-based atomic sensors may be used to detect gravitational waves. These proposals describe the sensors either as clocks or as atom interfero…
Superradiance on the milliHertz linewidth strontium clock transition
Matthew A. Norcia, Matthew N. Winchester, Julia R. K. Cline +1
Today's best atomic clocks are limited by frequency noise on the lasers used to interrogate the atoms. A proposed solution to this problem is to create a superradiant laser using a…