Solitons and their ghosts in PT-symmetric systems with defocusing nonlinearities
arXiv:1208.2445 · doi:10.1007/978-3-319-02057-0_1
Abstract
We examine a prototypical nonlinear Schrödinger model bearing a defocusing nonlinearity and Parity-Time (PT) symmetry. For such a model, the solutions can be identified numerically and characterized in the perturbative limit of small gain/loss. There we find two fundamental phenomena. First, the dark solitons that persist in the presence of the PT-symmetric potential are destabilized via a symmetry breaking (pitchfork) bifurcation. Second, the ground state and the dark soliton die hand-in-hand in a saddle-center bifurcation (a nonlinear analogue of the PT-phase transition) at a second critical value of the gain/loss parameter. The daughter states arising from the pitchfork are identified as "ghost states", which are not exact solutions of the original system, yet they play a critical role in the system's dynamics. A similar phenomenology is also pairwise identified for higher excited states, with e.g. the two-soliton structure bearing similar characteristics to the zero-soliton one, and the three-soliton state having the same pitchfork destabilization mechanism and saddle-center collision (in this case with the two-soliton) as the one-dark soliton. All of the above notions are generalized in two-dimensional settings for vortices, where the topological charge enforces the destabilization of a two-vortex state and the collision of a no-vortex state with a two-vortex one, of a one-vortex state with a three-vortex one, and so on. The dynamical manifestation of the instabilities mentioned above is examined through direct numerical simulations.
17 pages, 16 figures
References in corpus (24)
- Unidirectional Invisibility induced by PT-Symmetric Periodic Structures
- Visualization of Branch Points in PT-Symmetric Waveguides
- Experimental Study of Active LRC Circuits with PT-Symmetries
- Unidirectional Nonlinear PT-symmetric Optical Structures
- Physical realization of -symmetric potential scattering in a planar slab waveguide
- Experimental observation of oscillating and interacting matter wave dark solitons
- Solitons in PT-symmetric nonlinear lattices
- Stability of solitons in PT-symmetric couplers
- Optical solitons in -symmetric nonlinear couplers with gain and loss
- Model of a PT symmetric Bose-Einstein condensate in a delta-functions double well
- Mean-field dynamics of a non-Hermitian Bose-Hubbard dimer
- Experimental demonstration of single-site addressability in a two-dimensional optical lattice
- Dark solitons and vortices in PT-symmetric nonlinear media: from spontaneous symmetry breaking to nonlinear PT phase transitions
- Quantum Classical Correspondence for a non-Hermitian Bose-Hubbard Dimer
- Nonlinear modes in the harmonic PT-symmetric potential
- Solitons in a chain of PT-invariant dimers
- Controlling the transverse instability of dark solitons and nucleation of vortices by a potential barrier
- Stationary states of a PT-symmetric two-mode Bose-Einstein condensate
- Zeno effect and switching of solitons in nonlinear couplers
- Stability of localized modes in PT-symmetric nonlinear potentials
- Stabilization of solitons in PT models with supersymmetry by periodic management
- Bifurcations in Resonance Widths of an Open Bose-Hubbard Dimer
- Dark matter-wave solitons in the dimensionality crossover
- Impact of anisotropy on vortex clusters and their dynamics