Truncating loopy tensor networks by zero-mode gauge fixing

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Hauptverfasser: Sokolov, Ihor, Zhang, Yintai, Dziarmaga, Jacek
Format: Preprint
Veröffentlicht: 2025
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author Sokolov, Ihor
Zhang, Yintai
Dziarmaga, Jacek
author_facet Sokolov, Ihor
Zhang, Yintai
Dziarmaga, Jacek
contents Loopy tensor networks have internal correlations that often make their compression inefficient. We show that even local bond optimization can make better use of the insight it has locally into relevant loop correlations. By cutting the bond, we define a set of states whose linear dependence can be used to truncate the bond dimension. The linear dependence is eliminated with zero modes of the states' metric tensor. The method is illustrated by a series of examples for the infinite pair entangled projected state (iPEPS) and for the periodic matrix product state (pMPS) that occurs in the tensor renormalization group (TRG) step. In all examples, it provides better initial truncation errors than standard initialization.
format Preprint
id arxiv_https___arxiv_org_abs_2508_00338
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Truncating loopy tensor networks by zero-mode gauge fixing
Sokolov, Ihor
Zhang, Yintai
Dziarmaga, Jacek
Quantum Physics
Loopy tensor networks have internal correlations that often make their compression inefficient. We show that even local bond optimization can make better use of the insight it has locally into relevant loop correlations. By cutting the bond, we define a set of states whose linear dependence can be used to truncate the bond dimension. The linear dependence is eliminated with zero modes of the states' metric tensor. The method is illustrated by a series of examples for the infinite pair entangled projected state (iPEPS) and for the periodic matrix product state (pMPS) that occurs in the tensor renormalization group (TRG) step. In all examples, it provides better initial truncation errors than standard initialization.
title Truncating loopy tensor networks by zero-mode gauge fixing
topic Quantum Physics
url https://arxiv.org/abs/2508.00338