activity
20182022
most citedRotational Coherence Times of Polar Molecules in Optical Tweezers

89 citations · 90 across the 2 of their papers we have counts for

collaborators

7 papers

physics.atom-ph20221 cited

High-Resolution Laser Spectroscopy of a Functionalized Aromatic Molecule

Benjamin L. Augenbraun, Sean Burchesky, Andrew Winnicki +1

We present a high-resolution laser spectroscopic study of the and transitions of calcium (I) phenoxide, Ca…

physics.atom-ph202189 cited

Rotational Coherence Times of Polar Molecules in Optical Tweezers

Sean Burchesky, Loic Anderegg, Yicheng Bao +5

Qubit coherence times are critical to the performance of any robust quantum computing platform. For quantum information processing using arrays of polar molecules, a key performanc…

physics.atom-ph2021

Observation of Microwave Shielding of Ultracold Molecules

Loïc Anderegg, Sean Burchesky, Yicheng Bao +6

Harnessing the potential wide-ranging quantum science applications of molecules will require control of their interactions. Here, we use microwave radiation to directly engineer an…

physics.atom-ph2020

Observation of Collisions between Two Ultracold Ground-State CaF Molecules

Lawrence W. Cheuk, Loïc Anderegg, Yicheng Bao +5

We measure inelastic collisions between ultracold CaF molecules by combining two optical tweezers, each containing a single molecule. We observe collisions between CaF molecu…

physics.atom-ph2019

An Optical Tweezer Array of Ultracold Molecules

Loïc Anderegg, Lawrence W. Cheuk, Yicheng Bao +4

Arrays of single ultracold molecules promise to be a powerful platform for many applications ranging from quantum simulation to precision measurement. Here we report on the creatio…

physics.atom-ph2018

-Enhanced Imaging of Molecules in an Optical Trap

Lawrence W. Cheuk, Loïc Anderegg, Benjamin L. Augenbraun +4

We report non-destructive imaging of optically trapped calcium monofluoride (CaF) molecules using in-situ -enhanced gray molasses cooling. times more fluorescence is obtai…