3 citations · 3 across the 2 of their papers we have counts for
12 papers
A prototype differential atom interferometer for fundamental physics
C. F. A. Baynham, R. Hobson, O. Buchmueller +89
Gravitational waves and ultralight dark matter are among the most compelling frontiers in fundamental physics, motivating proposals for Very Long-Baseline Atom Interferometers (VLB…
Spin interferometry in a beam of ultracold molecules
R. A. Jenkins, M. T. Ziemba, F. J. Collings +6
We describe a spin interferometer using ultracold YbF molecules and develop the complete set of techniques needed to measure the electron's electric dipole moment, , with this…
Tuning interactions between static-field-shielded polar molecules with microwaves
Christopher J. Ho, Joy Dutta, Bijit Mukherjee +2
The ability to tune interparticle interactions is one of the main advantages of using ultracold quantum gases for quantum simulation of many-body physics. Current experiments with…
A Penning trap single-photon counter for axion detection
Jack A. Devlin, Marko L. Wojtkowiak, Shreyak R. Banhatti +6
Discovering the microscopic composition of dark matter is one of the most important open problems in physics today. Axions are a leading candidate to be dark matter; however, a sea…
Trapping and cooling mechanisms in blue-detuned magneto-optical traps of molecules
Qinshu Lyu, M. R. Tarbutt
In red-detuned magneto-optical traps (MOTs) of molecules, sub-Doppler heating competes with Doppler cooling, resulting in high temperature and low density. A solution is offered by…
Community input to the European Strategy on particle physics: Searches for Permanent Electric Dipole Moments
M. Athanasakis-Kaklamanakis, M. Au, R. Berger +8
Searches for electric dipole moments (EDMs) in fundamental particles and quantum systems with spin are pivotal experiments at the intersection of low-energy and high-precision part…