Effective field theories for gapless phases with fractons via a coset construction
arXiv:2110.13066 · doi:10.1103/PhysRevB.105.205109
Abstract
Fractons are particles with restricted mobility. We give a symmetry-based derivation of effective field theories of gapless phases with fractonic topological defects, such as solids and supersolids, using a coset construction. The resulting theory is identified as the Cosserat elasticity theory, which reproduces the conventional symmetric elasticity theory at low energies. The construction can be viewed as a dynamical realization of the inverse Higgs mechanism. We incorporate topological defects such as dislocations and disclinations, which are nontrivially related by the Bianchi identities of defect gauge fields. The origin of the fractonic nature of defects in those systems can be traced back to the semidirect product structure of translational and rotational groups. The construction is immediately extendable to higher dimensions and systems with broken translational symmetries, such as solids, supersolids, and vortex crystals. We identify Wess-Zumino terms in supersolids, which induce quasiparticle scatterings on topological defects.
17 pages, no figure; ver 2: published version
References in corpus (12)
- Local stabilizer codes in three dimensions without string logical operators
- A Duality Web in 2+1 Dimensions and Condensed Matter Physics
- Fracton Phases of Matter
- The quantum mechanics of perfect fluids
- Galileons as Wess-Zumino Terms
- Gapless Bosonic Excitation without symmetry breaking: Novel Algebraic Spin liquid with soft Gravitons
- Effective Lagrangian and Topological Interactions in Supersolids
- Fracton-elasticity duality of two-dimensional superfluid vortex crystals: defect interactions and quantum melting
- Wess-Zumino Terms for Relativistic Fluids, Superfluids, Solids, and Supersolids
- Counting Nambu-Goldstone modes of higher-form global symmetries
- Novel Algebraic Boson Liquid phase with soft Graviton excitations
- Spontaneously Broken Gauge Theories and the Coset Construction
Cited by in corpus (13)
- Ideal fracton superfluids
- A symmetry principle for gauge theories with fractons
- Emergent Dipole Gauge Fields and Fractons
- Fractons, non-Riemannian Geometry, and Double Field Theory
- Fracton-elasticity duality on curved manifolds
- Elastic Liénard-Wiechert potentials of dynamical dislocations from tensor gauge theory in 2+1 dimensions
- Dissipative fracton superfluids
- Dipole symmetries from the topology of the phase space and the constraints on the low-energy spectrum
- A geometric formulation of Schaefer's theory of Cosserat solids
- Fractonic Coset Construction for Spontaneously Broken Translations
- Non-equilibrium charge-vortex duality
- Effective field theory for the superfluid vortex lattice from coset construction
- Defects in Wigner crystals: fracton-elasticity duality and vacancy proliferation