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Bilinearly indexed random processes -- \emph{stationarization} of fully lifted interpolation

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arxiv 2311.18097 v1 pith:Y7L5PR6I submitted 2023-11-29 math.PR cond-mat.dis-nncs.ITmath-phmath.ITmath.MPmath.STstat.TH

classification math.PRcond-mat.dis-nncs.ITmath-phmath.ITmath.MPmath.STstat.TH
keywords interpolatingrandombilinearlyemphfullyhereindexedintroduced
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Our companion paper \cite{Stojnicnflgscompyx23} introduced a very powerful \emph{fully lifted} (fl) statistical interpolating/comparison mechanism for bilinearly indexed random processes. Here, we present a particular realization of such fl mechanism that relies on a stationarization along the interpolating path concept. A collection of very fundamental relations among the interpolating parameters is uncovered, contextualized, and presented. As a nice bonus, in particular special cases, we show that the introduced machinery allows various simplifications to forms readily usable in practice. Given how many well known random structures and optimization problems critically rely on the results of the type considered here, the range of applications is pretty much unlimited. We briefly point to some of these opportunities as well.

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Cited by 1 Pith paper

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  1. Ultrametric OGP - parametric RDT \emph{symmetric} binary perceptron connection

    cs.LG 2026-04 unverdicted novelty 7.0 of 10

    Upper bounds on ultrametric OGPs at levels 1 and 2 for symmetric binary perceptrons are approximately 1.6578 and 1.6219, closely matching the 3rd and 4th lifting-level parametric RDT estimates, supporting conjectures ...

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