Wediscuss the nature of symmetry breaking and the associated collective excitations for a system of bosons coupled to the electromagnetic field of two optical cavities. For the specific configuration realized in a recent experiment at ETH [1, 2], we show that, in absence of direct intercavity scattering and for parameters chosen such that the atoms couple symmetrically to both cavities, the system possesses an approximate U(1) symmetry which holds asymptotically for vanishing cavity field intensity. It corresponds to the invariance with respect to redistributing the total intensity I = I-1 + I-2 between the two cavities. The spontaneous breaking of this symmetry gives rise to a broken continuous translation-invariance for the atoms, creatin...
We consider laser-pumped one-dimensional two-component bosons in a parabolic trap embedded in a high...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
We demonstrate photon-mediated interactions between two individually trapped atoms coupled to a nano...
Wediscuss the nature of symmetry breaking and the associated collective excitations for a system of ...
The interaction of confined atoms with a single mode radiation field is the main subject in the theo...
We theoretically examine collective excitations of an optically driven atomic Bose-Einstein condensa...
© 2018 American Physical Society. We investigate the physics of a gas of ultracold atoms coupled to ...
This dissertation contains a study of ultracold atoms in optical cavities. We particularly focus on ...
Supersolids are characterized by the counterintuitive coexistence of superfluid and crystalline orde...
We consider a condensate of ultra cold bosonic atoms in a linear optical cavity illuminated by a two...
We first study effects of collective states (CS) in both superradiant and electromagnetically induce...
Three problems are investigated in the context of quantum collective dynamics. First, we examine the...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
The interaction between Bose Einstein condensates (BECs) and coherent light fields is treated within...
Funding: Army Research Office, the National Science Foundation under Grant No. CCF-1640075, and the ...
We consider laser-pumped one-dimensional two-component bosons in a parabolic trap embedded in a high...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
We demonstrate photon-mediated interactions between two individually trapped atoms coupled to a nano...
Wediscuss the nature of symmetry breaking and the associated collective excitations for a system of ...
The interaction of confined atoms with a single mode radiation field is the main subject in the theo...
We theoretically examine collective excitations of an optically driven atomic Bose-Einstein condensa...
© 2018 American Physical Society. We investigate the physics of a gas of ultracold atoms coupled to ...
This dissertation contains a study of ultracold atoms in optical cavities. We particularly focus on ...
Supersolids are characterized by the counterintuitive coexistence of superfluid and crystalline orde...
We consider a condensate of ultra cold bosonic atoms in a linear optical cavity illuminated by a two...
We first study effects of collective states (CS) in both superradiant and electromagnetically induce...
Three problems are investigated in the context of quantum collective dynamics. First, we examine the...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
The interaction between Bose Einstein condensates (BECs) and coherent light fields is treated within...
Funding: Army Research Office, the National Science Foundation under Grant No. CCF-1640075, and the ...
We consider laser-pumped one-dimensional two-component bosons in a parabolic trap embedded in a high...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
We demonstrate photon-mediated interactions between two individually trapped atoms coupled to a nano...