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Algebraic classification of Hietarinta's solutions of Yang-Baxter equations~:~invertible 4times 4 operators

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arxiv 2409.05375 v2 pith:QXSWM3EF submitted 2024-09-09 hep-th cond-mat.stat-mechmath-phmath.MPnlin.SIquant-ph

Algebraic classification of Hietarinta's solutions of Yang-Baxter equations~:~invertible 4times 4 operators

classification hep-th cond-mat.stat-mechmath-phmath.MPnlin.SIquant-ph
keywords solutionshietarintayang-baxteralgebraicalgebrasoperatorsrepresentationtechniques
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In order to examine the simulation of integrable quantum systems using quantum computers, it is crucial to first classify Yang-Baxter operators. Hietarinta was among the first to classify constant Yang-Baxter solutions for a two-dimensional local Hilbert space (qubit representation). Including the one produced by the permutation operator, he was able to construct eleven families of invertible solutions. These techniques are effective for 4 by 4 solutions, but they become difficult to use for representations with more dimensions. To get over this limitation, we use algebraic ans\"{a}tze to generate the constant Yang-Baxter solutions in a representation independent way. We employ four distinct algebraic structures that, depending on the qubit representation, replicate 10 of the 11 Hietarinta families. Among the techniques are partition algebras, Clifford algebras, Temperley-Lieb algebras, and a collection of commuting operators. Using these techniques, we do not obtain the $(2,2)$ Hietarinta class.

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Cited by 3 Pith papers

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  3. All 4 x 4 solutions of the quantum Yang-Baxter equation

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