Vortex modes supported by spin-orbit coupling in a laser with saturable absorption
arXiv:1810.12208 · doi:10.1088/1367-2630/aaec4a
Abstract
We introduce a system of two component two-dimensional (2D) complex Ginzburg-Landau equations (CGLEs) with spin-orbit-coupling (SOC) describing a wide-aperture microcavity laser with saturable gain and absorption. We report families of two-component self-trapped dissipative laser solitons in this system. The SOC terms are represented by the second-order differential operators, which sets the difference, , between the vorticities of the two components. We have found stable solitons of two types: vortex-antivortex (VAV) and semi-vortex (SV) bound states, featuring vorticities and , respectively. In previous works, 2D localized states of these types were found only in models including a trapping potential, while we are dealing with the self-trapping effect in the latteraly unconfined (free-space) model. The SV states are stable in a narrow interval of values of the gain coefficients. The stability interval is broader for VAV states, and it may be expanded by making SOC stronger (although the system without SOC features a stability interval too). We have found three branches of stationary solutions of both VAV and SV types, two unstable and one stable. The latter one is an attractor, as the unstable states spontaneously transform into the stable one, while retaining vorticities of their components. Unlike previously known 2D localized states, maintained by the combination of the trapping potential and SOC, in the present system the VAV and SV complexes are stable in the absence of diffusion. In contrast with the bright solitons in conservative models, chemical potentials of the dissipative solitons reported here are positive.
14 pages, 9 figures, to be published in New J. Phys
References in corpus (11)
- Spin-Injection Spectroscopy of a Spin-Orbit Coupled Fermi Gas
- Degenerate Quantum Gases with Spin-Orbit Coupling
- The creation of two-dimensional composite solitons in spin-orbit-coupled self-attractive Bose-Einstein condensates in free space
- Three-dimensional droplets of swirling superfluids
- Vortex solitons in two-dimensional spin-orbit coupled Bose-Einstein condensates: effects of the Rashba-Dresselhaus coupling and the Zeeman splitting
- Observation of mode-locked spatial laser solitons
- Spontaneous formation of vector vortex beams in vertical-cavity surface-emitting lasers with feedback
- Spin-orbit coupling and crystal-field splitting in the electronic and optical properties of nitride quantum dots with a wurtzite crystal structure
- Controlling the optical spin Hall effect with light
- One- and two-dimensional modes in the complex Ginzburg-Landau equation with a trapping potential
- Spin-orbit coupling and nonlinear modes of the polariton condensate in a harmonic trap
Cited by in corpus (6)
- Vortex solitons: Old results and new perspectives
- Multidimensional dissipative solitons and solitary vortices
- Spatiotemporal dissipative solitons and vortices in a multi-transverse-mode fiber laser
- Symmetry breaking in interacting ring-shaped superflows of Bose-Einstein condensates
- Nonlinear dynamics of Josephson vortices in merging superfluid rings
- Rotating azimuthons in dissipative Kerr media excited by superpositions of Bessel beams