We study the quantum dynamics of a one-dimensional SU(3)-symmetric system of cold atoms in the presence of two-body losses. We exploit the representation theory of SU(3), the so-called eightfold way, as a scheme to organize the dark states of the dissipative dynamics in terms of generalized Dicke states and show how they are dynamically approached, both in the weakly- and and strongly-interacting and dissipative regimes. Our results are relevant for a wide class of alkaline-earth(-like) gases experiments, paving the way to the dissipative preparation and exploitation of generalized Dicke states.Comment: 17 pages (5 main text + 12 Sup. Mat.), 7 figure
Very recently, the dissipative coupling was discovered, which develops and broadens methods for cont...
Recent experimental and theoretical progress as well as the prospect of commercially viable quantum ...
We study an interacting one-dimensional gas of spin-1/2 fermions with two-body losses. The dynamical...
International audienceWe study the quantum dynamics of a one-dimensional SU(3)-symmetric system of c...
The present thesis deals with the theoretical characterisation of the lossy dynamics in many-body op...
Three-level atomic systems coupled to light have the capacity to host dark states. We study a system...
Three-level atomic systems coupled to light have the capacity to host dark states. We study a system...
Motivated by recent advances in quantum dynamics, we investigate the dynamics of the system with $SU...
Dark states are eigenstates or steady states of a system that are decoupled from the radiation. Thei...
We characterize the dissipative phase transition in a driven dissipative Bose-Einstein condensate of...
The singlet state of a system of two two-level atoms changes smoothly, remaining dark, as the Hamilt...
We study dynamically coupled one-dimensional Bose-Hubbard models and solve for the wave functions an...
We study the post-quench dynamics of unitary Bose gases using a two-channel model, focusing on the e...
We investigate an open many-body quantum system in which kinetically constrained coherent and dissip...
We show that the light generated via spontaneous four-wave mixing or parametric down conversion in m...
Very recently, the dissipative coupling was discovered, which develops and broadens methods for cont...
Recent experimental and theoretical progress as well as the prospect of commercially viable quantum ...
We study an interacting one-dimensional gas of spin-1/2 fermions with two-body losses. The dynamical...
International audienceWe study the quantum dynamics of a one-dimensional SU(3)-symmetric system of c...
The present thesis deals with the theoretical characterisation of the lossy dynamics in many-body op...
Three-level atomic systems coupled to light have the capacity to host dark states. We study a system...
Three-level atomic systems coupled to light have the capacity to host dark states. We study a system...
Motivated by recent advances in quantum dynamics, we investigate the dynamics of the system with $SU...
Dark states are eigenstates or steady states of a system that are decoupled from the radiation. Thei...
We characterize the dissipative phase transition in a driven dissipative Bose-Einstein condensate of...
The singlet state of a system of two two-level atoms changes smoothly, remaining dark, as the Hamilt...
We study dynamically coupled one-dimensional Bose-Hubbard models and solve for the wave functions an...
We study the post-quench dynamics of unitary Bose gases using a two-channel model, focusing on the e...
We investigate an open many-body quantum system in which kinetically constrained coherent and dissip...
We show that the light generated via spontaneous four-wave mixing or parametric down conversion in m...
Very recently, the dissipative coupling was discovered, which develops and broadens methods for cont...
Recent experimental and theoretical progress as well as the prospect of commercially viable quantum ...
We study an interacting one-dimensional gas of spin-1/2 fermions with two-body losses. The dynamical...