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20242026
most citedFrom gauging to duality in one-dimensional quantum lattice models

1 citations · 1 across the 1 of their papers we have counts for

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10 papers

cond-mat.str-el20261 cited

From gauging to duality in one-dimensional quantum lattice models

Bram Vancraeynest-De Cuiper, José Garre-Rubio, Frank Verstraete +3

Gauging and duality transformations, two of the most useful tools in many-body physics, are shown to be equivalent up to constant depth quantum circuits in the case of one-dimensio…

quant-ph2025

Non-abelian quantum double models from iterated gauging

David Blanik, José Garre-Rubio

We reconstruct all (2+1)D quantum double models of finite groups from their boundary symmetries through the repeated application of a gauging procedure, extending the existing cons…

quant-ph2025

A simple mechanism for unstable degeneracies in local Hamiltonians

Jose Garre Rubio

If a local Hamiltonian eigenstate is mapped to another state by local operators commuting with the Hamiltonian terms, the latter is also an eigenstate. This basic observation impli…

quant-ph2025

Gauging Quantum Phases: A Matrix Product State Approach

David Blanik, José Garre-Rubio, Norbert Schuch

Utilizing the framework of matrix product states, we investigate gauging as a method for exploring quantum phases of matter. Specifically, we describe how symmetry-protected topolo…

quant-ph2025

Systematic construction of stabilizer codes via gauging abelian boundary symmetries

Bram Vancraeynest-De Cuiper, José Garre-Rubio

We propose a systematic framework to construct a (d+1)-dimensional stabilizer model from an initial generic d-dimensional abelian symmetry. Our approach builds upon the iterative g…

quant-ph2025

Two-Dimensional Bialgebras and Quantum Groups: Algebraic Structures and Tensor Network Realizations

José Garre-Rubio, András Molnár, Germán Sierra

We introduce a framework to define coalgebra and bialgebra structures on two-dimensional (2D) square lattices, extending the algebraic theory of Hopf algebras and quantum groups be…