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Statistical & Classical MLTensor Network2608.17135

Iterative tensor network transformations for element-wise evaluation of elementary and filtering functions

Xiao Wang, Tomohiro Hashizume, Pia Siegl, Dieter Jaksch

cs.LG cond-mat.stat-mech cs.AI physics.comp-ph quant-ph

Abstract

Tensor networks are powerful formats for compressing large-scale data. However, their application to general data processing has been limited by the difficulty of performing nonlinear operations. Here, we introduce iterative tensor network transformations (ITNTs), a general algorithmic framework for the element-wise evaluation of elementary and nonlinear filtering functions on data encoded as tensor trains (TTs), a class of tensor networks. Our approach operates entirely in the compressed domain, enabling efficient computation on exponentially large datasets while maintaining a controlled computational cost. We demonstrate its power in two key areas: (I) evaluating highly nonlinear elementary and filtering functions on a 3D reactive flow field, enabling high-fidelity reaction rate computation and region filtering, and (II) finding extrema in complex optimization problems, such as solving Max-SAT instances on spaces up to $2^{70}$ configurations. These results establish ITNT as a foundational tool that provides tensor network methods with the capability for general-purpose data science and large-scale optimization.

Topics

Classified with taxonomy v2 on Sat, 5 Sept 2026.

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