smectic -model
arXiv:2310.13046 · doi:10.1103/PhysRevB.108.224423
Abstract
A unidirectional "density" wave order in an otherwise isotropic environment is guaranteed to display a smecticlike Goldstone mode. Examples of such "soft" states include conventional smectic liquid crystals, putative Fulde-Ferrell-Larkin-Ovchinnikov superfluids, and helical states of frustrated bosons and spins. Here we develop generalized spin-smectic -models that break internal symmetry in addition to the -dimensional rotational and uniaxial translational symmetries. We explore long-wavelength properties of such strongly fluctuating states, show that they are characterized by a "double-power-law" static structure peak, and analyze their asymptotic symmetry-reduced crossover to conventional low-energy modes. We also present the associated Ginzburg-Landau theory, describing phase transition into such spin-smectic states, and discuss experimental realization of such models.
27 pages, 7 figures. Version published in PRB
References in corpus (6)
- Degenerate Quantum Gases with Spin-Orbit Coupling
- The Physics of Pair Density Waves
- Order by disorder and spiral spin liquid in frustrated diamond lattice antiferromagnets
- Supersolid symmetry breaking from compressional oscillations in a dipolar quantum gas
- Frustrated Heisenberg model within the stretched diamond lattice of LiYbO2
- Arc-shaped structure factor in the -- classical Heisenberg model on the triangular lattice