60 research outputs found
Macroscopic Quantum Fluctuations in the Josephson Dynamics of Two Weakly Linked Bose-Einstein Condensates
We study the quantum corrections to the Gross-Pitaevskii equation for two
weakly linked Bose-Einstein condensates. The goals are: 1) to investigate
dynamical regimes at the borderline between the classical and quantum behaviour
of the bosonic field; 2) to search for new macroscopic quantum coherence
phenomena not observable with other superfluid/superconducting systems. Quantum
fluctuations renormalize the classical Josephson oscillation frequencies. Large
amplitude phase oscillations are modulated, exhibiting collapses and revivals.
We describe a new inter-well oscillation mode, with a vanishing (ensemble
averaged) mean value of the observables, but with oscillating mean square
fluctuations. Increasing the number of condensate atoms, we recover the
classical Gross-Pitaevskii (Josephson) dynamics, without invoking the
symmetry-breaking of the Gauge invariance.Comment: Submitte
Nonlinear phase noise in optical communication systems using eigenfunction expansion method
Vector Gauge Theory
Gauge fields arise naturally in theories of free fermions when basis vectors are associated with the fermions and are allowed to vary with the spacetime point. A single three-component complex unit vector gives rise to the electromagnetic field, and two orthonormal five-component complex vectors result in U(2). 1
Electronic dispersion compensation based on maximum likelihood sequence estimation for 10 Gb/s optical communication systems
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