60 research outputs found

    Macroscopic Quantum Fluctuations in the Josephson Dynamics of Two Weakly Linked Bose-Einstein Condensates

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    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

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    Vector Gauge Theory

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    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

    Influence of Substrate Stiffness and Thickness on Cell Traction Forces

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    Advanced modulation formats for fiber optic communication systems

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