Dualities in one-dimensional quantum lattice models: topological sectors
- URL: http://arxiv.org/abs/2211.03777v2
- Date: Wed, 10 Jan 2024 17:02:07 GMT
- Title: Dualities in one-dimensional quantum lattice models: topological sectors
- Authors: Laurens Lootens, Clement Delcamp, Frank Verstraete
- Abstract summary: We construct a general framework for relating the spectra of dual theories to each other.
We find that the mapping between its topological sectors and those of the XXZ model is associated with the non-trivial braided auto-equivalence of the Drinfel'd center.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: It has been a long-standing open problem to construct a general framework for
relating the spectra of dual theories to each other. Here, we solve this
problem for the case of one-dimensional quantum lattice models with
symmetry-twisted boundary conditions. In ref. [PRX Quantum 4, 020357],
dualities are defined between (categorically) symmetric models that only differ
in a choice of module category. Using matrix product operators, we construct
from the data of module functors explicit symmetry operators preserving
boundary conditions as well as intertwiners mapping topological sectors of dual
models onto one another. We illustrate our construction with a family of
examples that are in the duality class of the spin-$\frac{1}{2}$ Heisenberg XXZ
model. One model has symmetry operators forming the fusion category
$\mathsf{Rep}(\mathcal S_3)$ of representations of the group $\mathcal S_3$. We
find that the mapping between its topological sectors and those of the XXZ
model is associated with the non-trivial braided auto-equivalence of the
Drinfel'd center of $\mathsf{Rep}(\mathcal S_3)$.
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