activity
20042008
most citedQuantum States and Phases in Driven Open Quantum Systems with Cold Atoms

1.3k citations · 2.6k across the 6 of their papers we have counts for

collaborators

7 papers

cond-mat.other200821 cited

Physical replicas and the Bose-glass in cold atomic gases

S. Morrison, A. Kantian, A. J. Daley +4

We study cold atomic gases in a disorder potential and analyze the correlations between different systems subjected to the same disorder landscape. Such independent copies with the…

quant-ph20081.3k cited

Quantum States and Phases in Driven Open Quantum Systems with Cold Atoms

S. Diehl, A. Micheli, A. Kantian +3

An open quantum system, whose time evolution is governed by a master equation, can be driven into a given pure quantum state by an appropriate design of the system-reservoir coupli…

cond-mat.other20062 cited

Repulsively bound atom pairs: Overview, Simulations and Links

A. J. Daley, A. Kantian, H. P. Büchler +6

We review the basic physics of repulsively bound atom pairs in an optical lattice, which were recently observed in the laboratory, including the theory and the experimental impleme…

cond-mat.other2006621 cited

Repulsively bound atom pairs in an optical lattice

K. Winkler, G. Thalhammer, F. Lang +6

Throughout physics, stable composite objects are usually formed via attractive forces, which allow the constituents to lower their energy by binding together. Repulsive forces sepa…

cond-mat.other2005

Strongly correlated Fermi-Bose mixtures in disordered optical lattices

L. Sanchez-Palencia, V. Ahufinger, A. Kantian +3

We investigate theoretically the low-temperature physics of a two-component ultracold mixture of bosons and fermions in disordered optical lattices. We focus on the strongly correl…

cond-mat.dis-nn2005

Disordered ultracold atomic gases in optical lattices: A case study of Fermi-Bose mixtures

V. Ahufinger, L. Sanchez-Palencia, A. Kantian +2

We present a review of properties of ultracold atomic Fermi-Bose mixtures in inhomogeneous and random optical lattices. In the strong interacting limit and at very low temperatures…