activity
20112015
most citedProbing the Bose-Glass--Superfluid Transition using Quantum Quenches of Disorder

98 citations · 122 across the 3 of their papers we have counts for

collaborators

5 papers

cond-mat.quant-gas2015★ 1 cited

Disappearance of Quasiparticles in a Bose Lattice Gas

David Chen, Carolyn Meldgin, Philip Russ +2

We use a momentum-space hole-burning technique implemented via stimulated Raman transitions to measure the momentum relaxation time for a gas of bosonic atoms trapped in an optical…

cond-mat.quant-gas2015★ 98 cited

Probing the Bose-Glass--Superfluid Transition using Quantum Quenches of Disorder

C. Meldgin, U. Ray, P. Russ +2

We probe the transition between superfluid and Bose glass phases using quantum quenches of disorder in an ultracold atomic lattice gas that realizes the disordered Bose-Hubbard mod…

cond-mat.quant-gas2014★ 23 cited

Bath-induced band decay of a Hubbard lattice gas

D. Chen, C. Meldgin, B. DeMarco

Dissipation is introduced to a strongly interacting ultracold bosonic gas in the Mott-insulator regime of a 3D spin-dependent optical lattice. A weakly interacting superfluid compr…

cond-mat.quant-gas2012

Slow Thermalization Between a Lattice and Free Bose Gas

David C. McKay, Carolyn Meldgin, David Chen +1

Using a 3D spin-dependent optical lattice, we study thermalization and energy exchange between two ultracold Bose gases, one of which is bound to the lattice and another that is fr…

cond-mat.quant-gas2011

Quantum Quench of an Atomic Mott Insulator

D. Chen, M. White, C. Borries +1

We study quenches across the Bose-Hubbard Mott-insulator-to-superfluid quantum phase transition using an ultra-cold atomic gas trapped in an optical lattice. Quenching from the Mot…