Motivated by the recent experiments on engineering localized losses in quantum gases, we study the dynamics of interacting bosons in a two-dimensional optical lattice with local dissipation. Together with the Gutzwiller mean-field theory for density matrices and Lindblad master equation, we show how the onsite interaction between bosons affects the particle loss for various strengths of dissipation. For moderate dissipation, the trend in particle loss differs significantly near the superfluid-Mott boundary than the deep superfluid regime. While the loss is suppressed for stronger dissipation in the deep superfluid regime, revealing the typical quantum Zeno effect, the loss near the phase boundary shows non-monotonic dependence on the dissip...
We investigate the effects of phase noise and particle loss on the dynamics of a Bose-Einstein conde...
Motivated by recent experiments on trapped ultracold bosonic atoms in an optical lattice potential, ...
見られていると絶縁体が安定化する --観測による量子多体状態の制御技術を確立--. 京都大学プレスリリース. 2017-12-25.Dissipation is ubiquitous in natur...
In recent years, controlled dissipation has proven to be a useful tool for the probing of a quantum ...
In recent years, controlled dissipation has proven to be a useful tool for the probing of a quantum ...
In recent years, controlled dissipation has proven to be a useful tool for the probing of a quantum ...
We observe the dissipative dynamics of a dense, strongly interacting gas of bosonic atom pairs in an...
We explore the dynamics of hard-core lattice bosons in the presence of strong non-local particle los...
Experimental control over ultracold quantum gases has made it possible to investigate low-dimensiona...
International audienceWe study a driven-dissipative Bose-Hubbard model in the presence of two-partic...
International audienceWe study a driven-dissipative Bose-Hubbard model in presence of two-particle l...
Experimental control over ultracold quantum gases has made it possible to investigate low-dimensiona...
Experimental control over ultracold quantum gases has made it possible to investigate low-dimensiona...
We investigate the effects of phase noise and particle loss on the dynamics of a Bose-Einstein conde...
We investigate the effects of phase noise and particle loss on the dynamics of a Bose-Einstein conde...
We investigate the effects of phase noise and particle loss on the dynamics of a Bose-Einstein conde...
Motivated by recent experiments on trapped ultracold bosonic atoms in an optical lattice potential, ...
見られていると絶縁体が安定化する --観測による量子多体状態の制御技術を確立--. 京都大学プレスリリース. 2017-12-25.Dissipation is ubiquitous in natur...
In recent years, controlled dissipation has proven to be a useful tool for the probing of a quantum ...
In recent years, controlled dissipation has proven to be a useful tool for the probing of a quantum ...
In recent years, controlled dissipation has proven to be a useful tool for the probing of a quantum ...
We observe the dissipative dynamics of a dense, strongly interacting gas of bosonic atom pairs in an...
We explore the dynamics of hard-core lattice bosons in the presence of strong non-local particle los...
Experimental control over ultracold quantum gases has made it possible to investigate low-dimensiona...
International audienceWe study a driven-dissipative Bose-Hubbard model in the presence of two-partic...
International audienceWe study a driven-dissipative Bose-Hubbard model in presence of two-particle l...
Experimental control over ultracold quantum gases has made it possible to investigate low-dimensiona...
Experimental control over ultracold quantum gases has made it possible to investigate low-dimensiona...
We investigate the effects of phase noise and particle loss on the dynamics of a Bose-Einstein conde...
We investigate the effects of phase noise and particle loss on the dynamics of a Bose-Einstein conde...
We investigate the effects of phase noise and particle loss on the dynamics of a Bose-Einstein conde...
Motivated by recent experiments on trapped ultracold bosonic atoms in an optical lattice potential, ...
見られていると絶縁体が安定化する --観測による量子多体状態の制御技術を確立--. 京都大学プレスリリース. 2017-12-25.Dissipation is ubiquitous in natur...