activity
20192026
most citedLarge Momentum Transfer Clock Atom Interferometry on the 689 nm Intercombination Line of Strontium

129 citations · 142 across the 5 of their papers we have counts for

collaborators
Showing physics.atom-phShow all

5 papers · 1 filter

physics.atom-ph2026

Creating and Probing Spin-Squeezed States of Molecules

Connor M. Holland, Callum L. Welsh, Yukai Lu +4

Polar molecules are a promising platform for quantum-enhanced sensing and precision tests of fundamental physics, owing to their strong long-range dipolar interactions, broad sensi…

physics.atom-ph2023

A Blue-Detuned Magneto-Optical Trap of CaF Molecules

Samuel J. Li, Connor M. Holland, Yukai Lu +1

A key method to produce trapped and laser-cooled molecules is the magneto-optical trap (MOT), which is conventionally created using light red-detuned from an optical transition. In…

physics.atom-ph2023

Raman Sideband Cooling of Molecules in an Optical Tweezer Array

Yukai Lu, Samuel J. Li, Connor M. Holland +1

Ultracold molecules, because of their rich internal structures and interactions, have been proposed as a promising platform for quantum science and precision measurement. Direct la…

physics.atom-ph2020

Synthesizing Optical Spectra using Computer-Generated Holography Techniques

Connor M. Holland, Yukai Lu, Lawrence W. Cheuk

Experimental control and detection of atoms and molecules often rely on optical transitions between different electronic states. In many cases, substructure such as hyperfine or sp…

physics.atom-ph2019129 cited

Large Momentum Transfer Clock Atom Interferometry on the 689 nm Intercombination Line of Strontium

Jan Rudolph, Thomas Wilkason, Megan Nantel +6

We report the first realization of large momentum transfer (LMT) clock atom interferometry. Using single-photon interactions on the strontium transition, we dem…