activity
20042026
most citedObservation of Non-Hermitian Skin Effect and Topology in Ultracold Atoms

390 citations · 2.2k across the 45 of their papers we have counts for

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Showing cond-mat.otherShow all

8 papers · 1 filter

cond-mat.other2008★ 73 cited

State-dependent, addressable subwavelength lattices with cold atoms

W. Yi, A. J. Daley, G. Pupillo +1

We discuss how adiabatic potentials can be used to create addressable lattices on a subwavelength scale, which can be used as a tool for local operations and readout within a latti…

cond-mat.other2007★ 17 cited

Signal of Bose condensation in an optical lattice at finite temperature

W. Yi, G. -D. Lin, L. -M. Duan

We discuss the experimental signal for the Bose condensation of cold atoms in an optical lattice at finite temperature. Instead of using the visibility of the interference pattern…

cond-mat.other2006★ 46 cited

Superfluid shells for trapped fermions with mass and population imbalance

G. -D. Lin, W. Yi, L. -M. Duan

We map out the phase diagram of strongly interacting fermions in a potential trap with mass and population imbalance between the two spin components. As a unique feature distinctiv…

cond-mat.other2006★ 34 cited

Phase diagram of a polarized Fermi gas across a Feshbach resonance in a potential trap

W. Yi, L. -M. Duan

We map out the detailed phase diagram of a trapped ultracold Fermi gas with population imbalance across a wide Feshbach resonance. We show that under the local density approximatio…

cond-mat.other2006★ 21 cited

BCS-BEC crossover and quantum phase transition for 6Li and 40K atoms across Feshbach resonance

W. Yi, L. -M. Duan

We systematically study the BCS-BEC crossover and the quantum phase transition in ultracold 6Li and 40K atoms across a wide Feshbach resonance. The background scattering lengths fo…

cond-mat.other2005

Dynamical mean-field equations for strongly interacting fermionic atoms in a potential trap

W. Yi, L. -M. Duan

We derive a set of dynamical mean-field equations for strongly interacting fermionic atoms in a potential trap across a Feshbach resonance. Our derivation is based on a variational…