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Spontaneous Symmetry Breaking, Self-Trapping, and Josephson Oscillations

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Cover of 'Spontaneous Symmetry Breaking, Self-Trapping, and Josephson Oscillations'

Table of Contents

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    Book Overview
  2. Altmetric Badge
    Chapter 1 Light-Induced Breaking of Symmetry in Photonic Crystal Waveguides with Nonlinear Defects as a Key for All-Optical Switching Circuits
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    Chapter 2 Temporal Quantum Fluctuations in the Fringe-Visibility of Atom Interferometers with Interacting Bose-Einstein Condensate
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    Chapter 3 Conditions and Stability Analysis for Saddle-Node Bifurcations of Solitary Waves in Generalized Nonlinear Schrödinger Equations
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    Chapter 4 Guided Modes and Symmetry Breaking Supported by Localized Gain
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    Chapter 5 Sub-Wavelength Plasmonic Solitons in 1D and 2D Arrays of Coupled Metallic Nanowires
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    Chapter 6 Analytical Solitary Wave Solutions of a Nonlinear Kronig-Penney Model for Photonic Structures Consisting of Linear and Nonlinear Layers
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    Chapter 7 Classical Dynamics of a Two-species Bose-Einstein Condensate in the Presence of Nonlinear Maser Processes
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    Chapter 8 Trapping Polarization of Light in Nonlinear Optical Fibers: An Ideal Raman Polarizer
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    Chapter 9 Escape Time of Josephson Junctions for Signal Detection
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    Chapter 10 Existence, Stability and Nonlinear Dynamics of Vortices and Vortex Clusters in Anisotropic Bose-Einstein Condensates
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    Chapter 11 Josephson Tunneling of Excited States in a Double-Well Potential
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    Chapter 12 Solitons in a Parametrically Driven Damped Discrete Nonlinear Schrödinger Equation
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    Chapter 13 Symmetry-Breaking Effects for Polariton Condensates in Double-Well Potentials
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    Chapter 14 From Coherent Modes to Turbulence and Granulation of Trapped Gases
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    Chapter 15 Defect Modes, Fano Resonances and Embedded States in Magnetic Metamaterials
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    Chapter 16 Frequency and Phase Locking of Laser Cavity Solitons
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    Chapter 17 Temperature Effects on the Quantum Coherence of Bosonic Josephson Junctions
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    Chapter 18 Multiple Fluxon Analogues and Dark Solitons in Linearly Coupled Bose–Einstein Condensates
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    Chapter 19 Symmetry Breaking Criteria in Electrostatically Loaded Bistable Curved/Prebuckled Micro Beams
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    Chapter 20 Bright Solitary Matter Waves: Formation, Stability and Interactions
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    Chapter 21 Erratum to: Escape Time of Josephson Junctions for Signal Detection
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    Chapter 22 Spontaneous Symmetry Breaking of Pinned Modes in Nonlinear Gratings with an Embedded Pair of Defects
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    Chapter 23 Light Self-Localization and Power-Dependent Steering in Anisotropic Dielectrics: Spatial Solitons in Uniaxial Nematic Liquid Crystals
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    Chapter 24 Spatial Solitons in Parity-Time-Symmetric Photonic Lattices: Recent Theoretical Results
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    Chapter 25 Spontaneous Formation and Switching of Optical Patterns in Semiconductor Microcavities
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    Chapter 26 Pattern Formation Under a Localized Gain
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    Chapter 27 Nonlinear Dynamics of Bloch Wave Packets in Honeycomb Lattices
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    Chapter 28 Studies of Existence and Stability of Circularly Polarized Few-Cycle Solitons Beyond the Slowly-Varying Envelope Approximation
Attention for Chapter 18: Multiple Fluxon Analogues and Dark Solitons in Linearly Coupled Bose–Einstein Condensates
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Chapter title
Multiple Fluxon Analogues and Dark Solitons in Linearly Coupled Bose–Einstein Condensates
Chapter number 18
Book title
Spontaneous Symmetry Breaking, Self-Trapping, and Josephson Oscillations
Published in
arXiv, January 2012
DOI 10.1007/10091_2012_18
Book ISBNs
978-3-64-221206-2, 978-3-64-221207-9
Authors

M. I. Qadir, H. Susanto, P. C. Matthews, Qadir, M. I., Susanto, H., Matthews, P. C.

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Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 30 May 2013.
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#20,194,150
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#666,807
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#221,242
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