11 citations · 12 across the 2 of their papers we have counts for
7 papers · 1 filter
Lossy Quantum Defect Theory of Ultracold Molecular Collisions
Arthur Christianen, Gerrit C. Groenenboom, Tijs Karman
We consider losses in collisions of ultracold molecules described by a simple statistical short-range model that explicitly accounts for the limited lifetime of classically chaotic…
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…
Imaging the onset of the resonance regime in low-energy NO-He collisions
Tim de Jongh, Matthieu Besemer, Quan Shuai +4
At low energies, the quantum wave-like nature of molecular interactions result in unique scattering behavior, ranging from the universal Wigner laws near zero Kelvin to the occurre…
Steering ultracold reactions through long-lived transient intermediates
Yu Liu, Ming-Guang Hu, Matthew A. Nichols +4
Controlling the pathways and outcomes of reactions is a broadly pursued goal in chemistry. In gas phase reactions, this is typically achieved by manipulating the properties of the…
Microwave shielding of ultracold polar molecules with imperfectly circular polarization
Tijs Karman, Jeremy M. Hutson
We investigate the use of microwave radiation to produce a repulsive shield between pairs of ultracold polar molecules and prevent collisional losses that occur when molecular pair…
Photo-induced two-body loss of ultracold molecules
Arthur Christianen, Martin W. Zwierlein, Gerrit C. Groenenboom +1
The lifetime of nonreactive ultracold bialkali gases was conjectured to be limited by sticky collisions amplifying three-body loss. We show that the sticking times were previously…