We develop a theory of quantum fluctuations and squeezing in a three-dimensional Bose-Einstein condensate atom interferometer with nonlinear losses. We use stochastic equations in a truncated Wigner representation to treat quantum noise. Our approach includes the multi-mode spatial evolution of spinor components and describes the many-body dynamics of a mesoscopic quantum system
We provide a framework for understanding recent experiments on squeezing of a collective atomic pseu...
A quantum-statistical description of noise in interferometers is given in terms of the Wigner distri...
We observe collective quantum spin states of an ensemble of atoms in a one-dimensional light-atom in...
We develop a theory of quantum fluctuations and squeezing in a three-dimensional Bose-Einstein conde...
A full treatment of decoherence and dephasing effects in BEC interferometry has been developed based...
We develop a method of simulating the full quantum field dynamics of multi-mode multi-component Bose...
A method of simulating the full quantum field dynamics of multimode, multi-component Bose-Einstein c...
This dissertation investigates the possibility of using a two-mode Bose-Einstein condensate (BEC) of...
We obtain a novel planar squeezing uncertainty relation for spin variances in a plane, and show how ...
The subject of this thesis is the use of BECs for atom interferometry. The standard way atom interfe...
We consider the use of quantum noise to characterize many-body states of spin systems realized with ...
We develop a scheme to generate number squeezing in a Bose-Einstein condensate by utilizing interfer...
We review recent developments in the theory of quantum dynamics in ultracold atomic physics, includi...
The present paper outlines a basic theoretical treatment of decoherence and dephasing effects in int...
In the first part of this thesis, we investigate the propagation of quantum fluctuations in a nonlin...
We provide a framework for understanding recent experiments on squeezing of a collective atomic pseu...
A quantum-statistical description of noise in interferometers is given in terms of the Wigner distri...
We observe collective quantum spin states of an ensemble of atoms in a one-dimensional light-atom in...
We develop a theory of quantum fluctuations and squeezing in a three-dimensional Bose-Einstein conde...
A full treatment of decoherence and dephasing effects in BEC interferometry has been developed based...
We develop a method of simulating the full quantum field dynamics of multi-mode multi-component Bose...
A method of simulating the full quantum field dynamics of multimode, multi-component Bose-Einstein c...
This dissertation investigates the possibility of using a two-mode Bose-Einstein condensate (BEC) of...
We obtain a novel planar squeezing uncertainty relation for spin variances in a plane, and show how ...
The subject of this thesis is the use of BECs for atom interferometry. The standard way atom interfe...
We consider the use of quantum noise to characterize many-body states of spin systems realized with ...
We develop a scheme to generate number squeezing in a Bose-Einstein condensate by utilizing interfer...
We review recent developments in the theory of quantum dynamics in ultracold atomic physics, includi...
The present paper outlines a basic theoretical treatment of decoherence and dephasing effects in int...
In the first part of this thesis, we investigate the propagation of quantum fluctuations in a nonlin...
We provide a framework for understanding recent experiments on squeezing of a collective atomic pseu...
A quantum-statistical description of noise in interferometers is given in terms of the Wigner distri...
We observe collective quantum spin states of an ensemble of atoms in a one-dimensional light-atom in...