activity
20182020
collaborators

5 papers

physics.atom-ph2020

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…

physics.chem-ph2019

Probing ultracold chemistry using ion spectrometry

Yu Liu, David D. Grimes, Ming-Guang Hu +1

Rapid progress in atomic, molecular, and optical (AMO) physics techniques enabled the creation of ultracold samples of molecular species and opened opportunities to explore chemist…

physics.atom-ph2019

Direct observation of bimolecular reactions of ultracold KRb molecules

Ming-Guang Hu, Yu Liu, David D. Grimes +7

Femtochemistry techniques have been instrumental in accessing the short time scales necessary to probe transient intermediates in chemical reactions. Here we take the contrasting a…

physics.atom-ph2018

Dipolar Exchange Quantum Logic Gate with Polar Molecules

Kang-Kuen Ni, Till Rosenband, David D. Grimes

We propose a two-qubit gate based on dipolar exchange interactions between individually addressable ultracold polar molecules in an array of optical dipole traps. Our proposal trea…

physics.atom-ph2018

Elliptical polarization for molecular Stark shift compensation in deep optical traps

Till Rosenband, David D. Grimes, Kang-Kuen Ni

In optical dipole traps, the excited rotational states of a molecule may experience a very different light shift than the ground state. For particles with two polarizability compon…