activity
20162022
most citedMeasurement of the SD transition in hydrogen

77 citations · 97 across the 3 of their papers we have counts for

collaborators

5 papers

physics.atom-ph2022

Optical deceleration of atomic hydrogen

S. F. Cooper, C. Rasor, R. G. Bullis +2

High-precision hydrogen spectroscopy is an active field which helps to determine the Rydberg constant and proton charge radius, tests bound-state QED, and can search for Beyond Sta…

physics.atom-ph2021★ 77 cited

Measurement of the SD transition in hydrogen

A. D. Brandt, S. F. Cooper, C. Rasor +3

We present a measurement of the hydrogen SD transition performed with a cryogenic atomic beam. The measured resonance frequency is kHz,…

physics.atom-ph2018

Frequency-Stabilized Deep-UV Laser at 243.1 nm with 1.4 W output power

Z. Burkley, A. D. Brandt, C. Rasor +2

We demonstrate a 1.4 W continuous wavelength (CW) laser at 243.1 nm. The radiation is generated through frequency quadrupling the output of a ytterbium-doped fiber amplifier system…

physics.ins-det2018

Cavity enhanced DUV laser for two-photon cooling of atomic hydrogen

Samuel F. Cooper, Zakary Burkley, Adam D. Brandt +2

We demonstrate a \SI{650}{\mW} \SI{243}{\nm} continuous-wave laser coupled to a linear optical enhancement cavity. The enhancement cavity can maintain \SI{30}{\W} of intracavity…

physics.atom-ph2016★ 20 cited

Yb fiber amplifier at 972.5 nm with frequency quadrupling to 243.1 nm

Z. Burkley, C. Rasor, S. F. Cooper +2

We demonstrate a continuous-wave ytterbium-doped fiber amplifier which produces 6.3 W at a wavelength of 972.5 nm. We frequency quadruple this source in two resonant doubling stage…