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Bipath Persistence as Zigzag Persistence

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arxiv 2501.00322 v1 pith:QTKR3Z6E submitted 2024-12-31 math.AT math.RT

classification math.ATmath.RT
keywords persistencebipathzigzagmodulesalgebraicdatadecomposeinfinite
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Persistence modules that decompose into interval modules are important in topological data analysis because we can interpret such intervals as the lifetime of topological features in the data. We can classify the settings in which persistence modules always decompose into intervals, by a recent result of Aoki, Escolar and Tada: these are standard single-parameter persistence, zigzag persistence, and bipath persistence. No other setting offers such guarantees. We show that a bipath persistence module can be decomposed via a closely related infinite zigzag persistence module, understood as a covering. This allows us to translate techniques of zigzag persistence, like recent advancements in its efficient computation by Dey and Hou, to bipath persistence. In addition, and again by the relation with the infinite zigzag, we can define an interleaving and bottleneck distance on bipath persistence. In turn, the algebraic stability of zigzag persistence implies the algebraic stability of bipath persistence.

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  1. On preservation of relative resolutions for poset representations

    math.RT 2025-06 conditional novelty 6.0 of 10

    For aligned interior systems of a poset, induction preserves interval covers and interval resolutions of persistence modules, and interval resolution dimensions are preserved.

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