We analyze the dynamics of quantum statistics in a harmonically trapped Bose-Einstein condensate, whose two-body interaction strength is controlled via a Feshbach resonance. From an initially noninteracting coherent state, the quantum field undergoes Kerr squeezing, which can be qualitatively described with a single mode model. To render the effect experimentally accessible, we propose a homodyne scheme, based on two h2008 The American Physical Societyyperfine components, which converts the quadrature squeezing into number squeezing. The scheme is numerically demonstrated using a two-component Hartree-Fock-Bogoliubov formalism
Ultracold atoms provide an ideal system for the realization of quantum technologies but also for the...
Three problems are investigated in the context of quantum collective dynamics. First, we examine the...
We propose to generate Einstein-Podolsky-Rosen (EPR) entanglement between groups of atoms in a two-w...
We analyze the dynamics of quantum statistics in a harmonically trapped Bose-Einstein condensate, wh...
We develop a scheme to generate number squeezing in a Bose-Einstein condensate by utilizing interfer...
A linear quantum dynamical theory for squeezing the output of the trapped Bose-Einstein condensate i...
We study the dynamics of Bose-Einstein condensates in symmetric double-well potentials following a s...
Quantum fluctuations in time-dependent, harmonically trapped Bose-Einstein condensates are studied w...
We develop a method of simulating the full quantum field dynamics of multi-mode multi-component Bose...
The properties of an atomic Bose-Einstein condensate in a double-well potential are investigated thr...
We study the quantum coherent tunneling dynamics of two weakly coupled atomic-molecular Bose-Einstei...
We propose an analytical method to study the entangled spatial and spin dynamics of interacting bimo...
We study the splitting of a harmonically trapped atomic Bose-Einstein condensate when we continuousl...
We study the splitting of a harmonically trapped atomic Bose-Einstein condensate when we continuousl...
The dynamical evolution of an ultracold Bose gas distributed across the sites of an optical lattice ...
Ultracold atoms provide an ideal system for the realization of quantum technologies but also for the...
Three problems are investigated in the context of quantum collective dynamics. First, we examine the...
We propose to generate Einstein-Podolsky-Rosen (EPR) entanglement between groups of atoms in a two-w...
We analyze the dynamics of quantum statistics in a harmonically trapped Bose-Einstein condensate, wh...
We develop a scheme to generate number squeezing in a Bose-Einstein condensate by utilizing interfer...
A linear quantum dynamical theory for squeezing the output of the trapped Bose-Einstein condensate i...
We study the dynamics of Bose-Einstein condensates in symmetric double-well potentials following a s...
Quantum fluctuations in time-dependent, harmonically trapped Bose-Einstein condensates are studied w...
We develop a method of simulating the full quantum field dynamics of multi-mode multi-component Bose...
The properties of an atomic Bose-Einstein condensate in a double-well potential are investigated thr...
We study the quantum coherent tunneling dynamics of two weakly coupled atomic-molecular Bose-Einstei...
We propose an analytical method to study the entangled spatial and spin dynamics of interacting bimo...
We study the splitting of a harmonically trapped atomic Bose-Einstein condensate when we continuousl...
We study the splitting of a harmonically trapped atomic Bose-Einstein condensate when we continuousl...
The dynamical evolution of an ultracold Bose gas distributed across the sites of an optical lattice ...
Ultracold atoms provide an ideal system for the realization of quantum technologies but also for the...
Three problems are investigated in the context of quantum collective dynamics. First, we examine the...
We propose to generate Einstein-Podolsky-Rosen (EPR) entanglement between groups of atoms in a two-w...