Gauge fields induced by curved spacetime
arXiv:2412.03647 · doi:10.1093/ptep/ptaf118
Abstract
I found an extended duality (triality) between Dirac fermions in periodic spacetime metrics, nonrelativistic fermions in gauge fields (e.g., Harper-Hofstadter model), and in periodic scalar fields on a lattice (e.g., Aubry-André model). This indicates an unexpected equivalence between spacetime metrics, gauge fields, and scalar fields on the lattice, which are understood as different physical representations of the same mathematical object, the quantum group . This quantum group is generated by the exponentiation of two canonical conjugate operators, namely a linear combination of position and momentum (periodic spacetime metrics), the two components of the gauge-invariant momentum (gauge fields), and position and momentum (periodic scalar fields). Hence, on a lattice, Dirac fermions in a periodic spacetime metric are equivalent to nonrelativistic fermions in a periodic scalar field after a proper canonical transformation. The three lattice Hamiltonians (periodic spacetime metric, Harper-Hofstadter, and Aubry-André) share the same properties, namely fractal phase diagrams, self-similarity, -duality, topological invariants, flat bands, and topologically quantized current in the incommensurate regimes. In essence, this work unveils an unexpected link between gravity and gauge fields, opens new avenues for studying analog gravity, e.g., the Unruh effect and universe expansions/contractions, suggests the existence of an -duality of spacetime curvatures, and hints at novel pathways to quantized gravity theories.
14 pages, 3 figures, added equations and appendices, published in PTEP
References in corpus (41)
- Many-Body Physics with Ultracold Gases
- Microwave photonics with superconducting quantum circuits
- Topological States and Adiabatic Pumping in Quasicrystals
- Topological Defects and Gapless Modes in Insulators and Superconductors
- Topological Origin of Zero-Energy Edge States in Particle-Hole Symmetric Systems
- A Thouless Quantum Pump with Ultracold Bosonic Atoms in an Optical Superlattice
- Topological Thouless Pumping of Ultracold Fermions
- Topological quantum matter in synthetic dimensions
- Topological states in engineered atomic lattices
- Charge inhomogeneities due to smooth ripples in graphene sheets
- Quantum fields in curved spacetime
- Atomic-Scale Interface Engineering of Majorana Edge Modes in a 2D Magnet-Superconductor Hybrid System
- Quantum field theory in curved graphene spacetimes, Lobachevsky geometry, Weyl symmetry, Hawking effect, and all that
- Dirac Equation For Cold Atoms In Artificial Curved Spacetimes
- Unitary representations of $U_{q}(\mathfrak{sl}(2,\RR))$, the modular double, and the multiparticle q-deformed Toda chains
- Competition and interplay between topology and quasi-periodic disorder in Thouless pumping of ultracold atoms
- Dislocations and torsion in graphene and related systems
- Synthetic Unruh effect in cold atoms
- Hofstadter butterfly as Quantum phase diagram
- The Aubry-André model as the hobbyhorse for understanding localization phenomenon
- Geometrical and topological aspects of graphene and related materials
- Hofstadter's Butterfly in Quantum Geometry
- Perturbative Approach to Flat Chern Bands in the Hofstadter Model
- Gauge fields and curvature in graphene
- Simulating quantum field theory in curved spacetime with quantum many-body systems
- The Ten Martini Problem
- Hawking fragmentation and Hawking attenuation in Weyl semimetals
- Probing topological superconductors with emergent gravity
- Topologically quantized current in quasiperiodic Thouless pumps
- A cosmological model for corrugated graphene sheets
- Symmetry Breaking and Lattice Kirigami
- Casimir forces on deformed fermionic chains
- Dirac fields in curved spacetime as Fermi-Hubbard model with non unitary tunnelings
- Hofstadter's Butterfly and Langlands Duality
- Chiral Spin-Chain Interfaces Exhibiting Event-Horizon Physics
- Quantumness of gravity in harmonically trapped particles
- AdS/CFT Correspondence with a 3D Black Hole Simulator
- Gravitational entanglement witness through Einstein ring image
- Hawking radiation on the lattice from Floquet and local Hamiltonian quench dynamics
- Majorana modes in striped two-dimensional inhomogeneous topological superconductors
- Hofstadter-Toda spectral duality and quantum groups