Weyl solitons in three-dimensional optical lattices
arXiv:1804.00837 · doi:10.1103/PhysRevA.97.043602
Abstract
Weyl fermions are massless chiral quasiparticles existing in materials known as Weyl semimetals. Topological surface states, associated with the unusual electronic structure in the Weyl semimetals, have been recently demonstrated in linear systems. Ultracold atomic gases, featuring laser-assisted tunneling in three-dimensional optical lattices, can be used for the emulation of Weyl semimetals, including nonlinear effects induced by the collisional nonlinearity of atomic Bose-Einstein condensates. We demonstrate that this setting gives rise to topological states in the form of Weyl solitons at the surface of the underlying optical lattice. These nonlinear modes, being exceptionally robust, bifurcate from linear states for a given quasi-momentum. The Weyl solitons may be used to design an efficient control scheme for topologically-protected unidirectional propagation of excitations in light-matter-interaction physics. After the recently introduced Majorana and Dirac solitons, the Weyl solitons proposed in this work constitute the third (and the last) member in this family of topological solitons.
Physical Review A, to be published
References in corpus (13)
- Evidence of Majorana fermions in an Al - InAs nanowire topological superconductor
- Quantum transport of massless Dirac fermions in graphene
- Topological Transition in a Non-Hermitian Quantum Walk
- Line of Dirac Nodes in Hyper-Honeycomb Lattices
- Polariton Topological Insulator
- Direct imaging of topological edge states in cold-atom systems
- Direct observation of coherent inter-orbital spin-exchange dynamics
- Non-equilibrium Green s function based model for dephasing in quantum transport
- Crossing Over from Attractive to Repulsive Interactions in a Tunneling Bosonic Josephson Junction
- Designer curved-space geometry for relativistic fermions in Weyl metamaterials
- Constructing a Weyl semimetal by stacking one dimensional topological phases
- Localized modes of binary mixtures of Bose-Einstein condensates in nonlinear optical lattices
- Weyl nodes as topological defects of the Wannier-Stark ladder: From surface to bulk Fermi arcs
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- Strongly Nonlinear Topological Phases of Cascaded Topoelectrical Circuits
- Two-dimensional composite solitons in a spin-orbit-coupled Fermi gas in free space
- Speed-of-light pulses in a nonlinear Weyl equation
- Modeling Dark Matter Halos with Nonlinear Field Theories
- Dark solitons in nonlinear Su-Schrieffer-Heeger lattices