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Cornell University

Mueller Group Research Personnel

2017

Core filling and snaking instability of dark solitons in spin-imbalanced superfluid Fermi gases

Reichl M, Mueller E. Core filling and snaking instability of dark solitons in spin-imbalanced superfluid Fermi gases. Physical Review A. 2017;95(5).

Cooling quantum gases with entropy localization

Ünal F, Mueller E. Cooling quantum gases with entropy localization. New Journal of Physics. 2017;19(2).

2016

Dimensional crossover in a spin-imbalanced Fermi gas

Dutta S, Mueller E. Dimensional crossover in a spin-imbalanced Fermi gas. Physical Review A. 2016;94(6).

Nonequilibrium fractional Hall response after a topological quench

Ünal F, Mueller E, Oktel M. Nonequilibrium fractional Hall response after a topological quench. Physical Review A. 2016;94(5).

Lattice bosons with infinite-range checkerboard interactions

Sundar B, Mueller E. Lattice bosons with infinite-range checkerboard interactions. Physical Review A. 2016;94(3).

Observation of a new superfluid phase for 3He embedded in nematically ordered aerogel

Zhelev N, Reichl M, Abhilash T, Smith E, Nguyen K, Mueller E, et al. Observation of a new superfluid phase for 3He embedded in nematically ordered aerogel. Nature Communications. 2016;7.

Disappearance of quasiparticles in a Bose lattice gas

Chen D, Meldgin C, Russ P, DeMarco B, Mueller E. Disappearance of quasiparticles in a Bose lattice gas. Physical Review A. 2016;94(2).

Competing ground states of strongly correlated bosons in the Harper-Hofstadter-Mott model

Natu S, Mueller E, Sarma D. Competing ground states of strongly correlated bosons in the Harper-Hofstadter-Mott model. Physical Review A. 2016;93(6).

Dynamics of pattern-loaded fermions in bichromatic optical lattices

Reichl M, Mueller E. Dynamics of pattern-loaded fermions in bichromatic optical lattices. Physical Review A. 2016;93(3).

Proposal to directly observe the Kondo effect through enhanced photoinduced scattering of cold fermionic and bosonic atoms

Sundar B, Mueller E. Proposal to directly observe the Kondo effect through enhanced photoinduced scattering of cold fermionic and bosonic atoms. Physical Review A. 2016;93(2).