Area of research
Atomic and Molecular Physics, and Optics · Statistical and Nonlinear Physics
Research interest
Research interests include Physics, Dipole, Bose–Einstein condensate, Vortex, Spinor, and Soliton.
A new form of liquid matter: Quantum droplets
A new form of liquid matter: quantum droplets
Two-dimensional composite solitons in Bose-Einstein condensates with spatially confined spin-orbit coupling
Two-dimensional vortex quantum droplets
Two-Dimensional Vortex Solitons in Spin-Orbit-Coupled Dipolar Bose–Einstein Condensates
Two-dimensional dipolar gap solitons in free space with spin-orbit coupling
Anisotropic semivortices in dipolar spinor condensates controlled by Zeeman splitting
Cross-symmetric dipolar-matter-wave solitons in double-well chains
Long-range transverse Ising model built with dipolar condensates in two-well arrays
Two-dimensional solitons in dipolar Bose-Einstein condensates with spin-orbit coupling
Dipolar matter-wave solitons in two-dimensional anisotropic discrete lattices
Quadrupolar matter-wave soliton in two-dimensional free space
Symmetry Breaking Bifurcation of Two-Component Soliton Modes in an Inverted Nonlinear Random Lattice
Symmetry Breaking of Discrete Solitons in Two-Component Waveguide Arrays with Long-Range Linearly Coupled Effect
Matter-wave solitons supported by field-induced dipole-dipole repulsion with spatially modulated strength
Dipolar Matter-Wave Soliton in One-Dimensional Optical Lattice with Tunable Local and Nonlocal Nonlinearities
Symmetry breaking in dipolar matter-wave solitons in dual-core couplers
Lattice solitons with quadrupolar intersite interactions
Double Symmetry Breaking of Modes in Dual-Core Rotating System
Wave Modes Trapped in Rotating Nonlinear Potentials
Nonlinear modes and symmetry breaking in rotating double-well potentials
Two-component solitons with a spatially modulated linear coupling: Inverted photonic crystals and fused couplers