Berry Phase and Topology in Ultrastrongly Coupled Quantum Light-Matter Systems
arXiv:2209.01363 · doi:10.1103/PhysRevB.107.195104
Abstract
Strong coupling between matter and quantized electromagnetic fields in a cavity has emerged as a possible route toward controlling the phase of matter in the absence of an external drive. We develop a faithful and efficient theoretical framework to analyze quantum geometry and topology in materials ultrastrongly coupled to cavity electromagnetic fields in two dimensions. The formalism allows us to accurately evaluate geometrical and topological quantities, such as Berry phase and Chern number, in ultrastrong and deep strong coupling regimes. We apply our general framework to analyze a concrete model of massive Dirac fermions coupled to a circularly polarized cavity mode. Surprisingly, in addition to an ordinary transition to the topological phase, our analysis reveals a qualitatively new feature in deep strong coupling regimes, namely, the emergence of reentrant transition to the topologically trivial phase. We also present its intuitive understanding by showing the unitary mapping between the low-energy effective theory of strongly coupled light-matter systems and the Haldane honeycomb model.
13 pages, 6 figures
References in corpus (23)
- Topological Photonics
- Classification of topological insulators and superconductors in three spatial dimensions
- Scheme to Achieve Silicon Topological Photonics
- Microwave photonics with superconducting quantum circuits
- Time Reversal Polarization and a Z_2 Adiabatic Spin Pump
- Topological Defects and Gapless Modes in Insulators and Superconductors
- Topological Quantum Matter with Ultracold Gases in Optical Lattices
- Quantum Spin Hall Effect and Topologically Invariant Chern Numbers
- Tools for quantum simulation with ultracold atoms in optical lattices
- Topological Polaritons
- Cavity Quantum Materials
- Strongly-Correlated Electron-Photon Systems
- Ultrastrong Coupling in the Near-field of Complementary Split Ring Resonators
- Cavity Quantum-Electrodynamical Chern Insulator: Route Towards Light-Induced Quantized Anomalous Hall Effect in Graphene
- Spin-orbit coupling and Berry phase with ultracold atoms in 2D optical lattices
- Fate of photon blockade in the deep strong coupling regime
- Polaritonic Hofstadter Butterfly and Cavity-Control of the Quantized Hall Conductance
- Accelerating Polaritons with External Electric and Magnetic Fields
- Effective theory for matter in non-perturbative cavity QED
- Intersubband polariton-polariton scattering in a dispersive microcavity
- Cavity engineering of Hubbard via phonon polaritons
- Quantum topology in the ultrastrong coupling regime
- Cavity-mediated electron hopping in disordered quantum Hall systems
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- Cavity Moiré Materials: Controlling Magnetic Frustration with Quantum Light-Matter Interaction
- Quantum optics measurement scheme for quantum geometry and topological invariants
- Emergent Haldane Model and Photon-Valley Locking in Chiral Cavities
- Role of Bath-Induced Many-Body Interactions in the Dissipative Phases of the Su-Schrieffer-Heeger Model
- The Streda Formula for Floquet Systems: Topological Invariants and Quantized Anomalies from Cesaro Summation
- Multiple polaritonic edge states in a Su-Schrieffer-Heeger chain strongly coupled to a multimode cavity
- Terahertz chiral photonic-crystal cavities for Dirac gap engineering in graphene
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- Quantum Hall effect in a chiral cavity
- Angular Momentum-Dependent Spectral Shift in Chiral Vacuum Cavities
- Cavity-Mediated Electron-Electron Interactions: Renormalizing Dirac States in Graphene
- One-dimensional extended Hubbard model coupled with an optical cavity
- Modifying electronic and structural properties of 2D van der Waals materials via cavity quantum vacuum fluctuations: A first-principles QEDFT study
- Topological Magnetic Phases and Magnon-Phonon Hybridization in the Presence of Strong Dzyaloshinskii-Moriya Interaction
- Separation of relaxation timescales via strong system-bath coupling: Dissipative three-level system as a case study
- Chern insulators and topological flat bands in cavity-embedded kagome systems
- Behavior of quantum coherence in the ultrastrong and deep strong coupling regimes of light-matter system