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From spinon band topology to the symmetry quantum numbers of monopoles in Dirac spin liquids

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arxiv 1811.11182 v2 pith:A5SUUQ5J submitted 2018-11-27 cond-mat.str-el hep-lathep-th

classification cond-mat.str-elhep-lathep-th
keywords quantumtopologybandlatticesmonopolesdiracpropertiessymmetry
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The interplay of symmetry and topology has been at the forefront of recent progress in quantum matter. Here we uncover an unexpected connection between band topology and the description of competing orders in a quantum magnet. Specifically we show that aspects of band topology protected by crystalline symmetries determine key properties of the Dirac spin liquid (DSL) which can be defined on the honeycomb, square, triangular and kagom\'e lattices. At low energies, the DSL on all these lattices is described by an emergent Quantum Electrodynamics (QED$_3$) with $N_f=4$ flavors of Dirac fermions coupled to a $U(1)$ gauge field. However the symmetry properties of the magnetic monopoles, an important class of critical degrees of freedom, behave very differently on different lattices. In particular, we show that the lattice momentum and angular momentum of monopoles can be determined from the charge (or Wannier) centers of the corresponding spinon insulator. We also show that for DSLs on bipartite lattices, there always exists a monopole that transforms trivially under all microscopic symmetries owing to the existence of a parent SU(2) gauge theory. We connect our results to generalized Lieb-Schultz-Mattis theorems and also derive the time-reversal and reflection properties of monopoles. Our results indicate that recent insights into free fermion band topology can also guide the description of strongly correlated quantum matter.

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Cited by 3 Pith papers

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  1. Superconducting and charge-ordered phases from Dirac quantum spin liquids on the triangular lattice

    cond-mat.str-el 2026-08 conditional novelty 6.0 of 10

    Chargon condensation in a triangular-lattice Dirac spin liquid produces a catalog of pair-density-wave, charge-density-wave, bond-density-wave, and current-loop orders, with uniform d+id superconductivity allowed but ...

  2. Conformal QED in AdS as a BCFT

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    In conformal QED on AdS_d, the Dirichlet boundary condition's second lightest scalar becomes marginal for 3<d<4, indicating the Dirichlet BCFT is unstable at d=3, whereas the Neumann BCFT remains stable.

  3. Lectures on insulating and conducting quantum spin liquids

    cond-mat.str-el 2025-12 unverdicted novelty 3.0 of 10

    The notes argue that the FL* state — small pockets plus a quantized spin-liquid anomaly — resolves the ADMR pocket and v_F >> v_Delta problems that defeated holon-metal and plain fermionic-parton theories of the cuprates.

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