2024/12/12 by A. Kudlis, Kudlis, A., D. Novokreschenov +3 · 1 citation
Physics and Astronomy · Engineering · #Mechanical and Optical Resonators #Geophysics and Sensor Technology #Strong Light-Matter Interactions
paper · pdf · doi:10.48550/arxiv.2412.09245
The classic lattice XY model is one of the universal models of statistical mechanics appearing in a broad variety of optical and condensed matter systems. One of its possible realizations is a system of tunnel-coupled spinor polariton condensates, where phases of individual condensates play a role of the two-dimensional spins. We show that the account of the polarization degree of freedom of cavity polaritons adds a new twist to the problem, modifying in particular the structure of the ground state. We formulate the corresponding classical spin Hamiltonian, which couples phase and polarization dynamics, and consider several particular geometries, demonstrating the principal differences between the scalar and spinor cases. Possible analog of spin Meissner effect for coupled condensates is discussed.