A full treatment of decoherence and dephasing effects in BEC interferometry has been developed based on using quantum correlation functions for treating interferometric effects. The BEC is described via a phase space distribution functional of the Wigner type for the condensate modes and the positive P type for the non-condensate modes. Ito equations for stochastic condensate and non-condensate field functions replace the functional Fokker-Planck equation for the distribution functional and stochastic averages of field function products determine the quantum correlation functions
Quantum Interferometry in Phase Space is primarily concerned with quantum-mechanical distribution fu...
This topical review provides an overview of the key theoretical features of Bose-Einstein condensate...
We review the properties of chaoticity and coherence in Bose-Einstein condensation and correlations,...
The present paper outlines a basic theoretical treatment of decoherence and dephasing effects in int...
A phase space theory approach for treating dynamical behaviour of Bose-Einstein condensates applicab...
The coherence properties of phase fluctuating Bose-Einstein condensates are studied both theoretical...
We develop a theory of quantum fluctuations and squeezing in a three-dimensional Bose-Einstein conde...
The dissociation of a molecular Bose-Einstein condensate into its constituent particles is a process...
We investigate the finite-lifetime effects on first-order correlation functions of dissipative Bose-...
A method of simulating the full quantum field dynamics of multimode, multi-component Bose-Einstein c...
In search of non-classical correlations between momentum components of a Bose-Einstein condensate (B...
A powerful method for discussing quantum stochastic systems is presented. The formalism is in terms ...
The Fourier transform of the density-density correlation function in a Bose-Einstein condensate (BEC...
We experimentally and theoretically study phase coherence in two-component Bose-Einstein condensates...
We review and characterize the quantum coherence measures that are most useful for quantum gases, in...
Quantum Interferometry in Phase Space is primarily concerned with quantum-mechanical distribution fu...
This topical review provides an overview of the key theoretical features of Bose-Einstein condensate...
We review the properties of chaoticity and coherence in Bose-Einstein condensation and correlations,...
The present paper outlines a basic theoretical treatment of decoherence and dephasing effects in int...
A phase space theory approach for treating dynamical behaviour of Bose-Einstein condensates applicab...
The coherence properties of phase fluctuating Bose-Einstein condensates are studied both theoretical...
We develop a theory of quantum fluctuations and squeezing in a three-dimensional Bose-Einstein conde...
The dissociation of a molecular Bose-Einstein condensate into its constituent particles is a process...
We investigate the finite-lifetime effects on first-order correlation functions of dissipative Bose-...
A method of simulating the full quantum field dynamics of multimode, multi-component Bose-Einstein c...
In search of non-classical correlations between momentum components of a Bose-Einstein condensate (B...
A powerful method for discussing quantum stochastic systems is presented. The formalism is in terms ...
The Fourier transform of the density-density correlation function in a Bose-Einstein condensate (BEC...
We experimentally and theoretically study phase coherence in two-component Bose-Einstein condensates...
We review and characterize the quantum coherence measures that are most useful for quantum gases, in...
Quantum Interferometry in Phase Space is primarily concerned with quantum-mechanical distribution fu...
This topical review provides an overview of the key theoretical features of Bose-Einstein condensate...
We review the properties of chaoticity and coherence in Bose-Einstein condensation and correlations,...