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Spectral Universality for Matrices with Non-Linear Correlated Entries

Marwa Banna, Issa-Mbenard Dabo, Florence Merlevède

Source record

Source: arXiv

Published: Sep 30, 2026

arXiv: 2609.39793

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Source abstract

We establish nonasymptotic spectral comparison results for matrices whose entries are non-linear functions of an iid random field. Under an exponential decay assumption on an L∞\mathbb L^\infty-coupling coefficient, we derive high-probability bounds for the Hausdorff distance between their spectra and those of Gaussian matrices with matching covariance structures. We further derive a comparison with a covariance-matched free model and derive corresponding noncommutative Khintchine-type bounds. The results apply, in particular, to matrices whose entries are nonlinear transformations of causal linear processes, Volterra-type processes, and neural networks. The proof combines finite-memory approximation, block decomposition, Gaussian interpolation, and resolvent estimates.

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Spectral Universality for Matrices with Non-Linear Correlated Entries — Mathematical Frontier Network