RC-MIFT: Sharp Robustness Bounds and Screening-Conditioned Response in Materials

This work develops a task-aligned Schur-complement framework for quantifying the robustness of material response under simultaneous errors in internal curvature, bare stiffness, and coupling. We identify the screening leverage κ as a conditioning coordinate governing response softening and structured error amplification, derive sharp nonasymptotic robustness bounds, and establish conditional precision-scaling laws. The framework also includes a black-box theorem for projected response extraction and no-go results for finite-source and state-transfer inference. Numerical audits and reanalysis of published data-including 42 stable response records, 72 matched cDFPT/DFPT cases, a near-critical meta-nitroaniline benchmark, a TaS2 stability crossing, and a Peierls-model sequence-provide complementary tests. The results establish screening leverage as a useful measure of response conditioning, rather than a universal single-variable error law.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-16
DOI
https://doi.org/10.5281/zenodo.22793944
Primary Topic
Probabilistic and Robust Engineering Design
Type
article
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article

RC-MIFT: Sharp Robustness Bounds and Screening-Conditioned Response in Materials

Idrees Oreibi, Rehab Shather Abdul Hamza
Zenodo (CERN European Organization for Nuclear Research)
Probabilistic and Robust Engineering Design
article

RC-MIFT: Sharp Robustness Bounds and Screening-Conditioned Response in Materials

Idrees Oreibi, Rehab Shather Abdul Hamza
article en

Abstract

This work develops a task-aligned Schur-complement framework for quantifying the robustness of material response under simultaneous errors in internal curvature, bare stiffness, and coupling. We identify the screening leverage κ as a conditioning coordinate governing response softening and structured error amplification, derive sharp nonasymptotic robustness bounds, and establish conditional precision-scaling laws. The framework also includes a black-box theorem for projected response extraction and no-go results for finite-source and state-transfer inference. Numerical audits and reanalysis of published data-including 42 stable response records, 72 matched cDFPT/DFPT cases, a near-critical meta-nitroaniline benchmark, a TaS2 stability crossing, and a Peierls-model sequence-provide complementary tests. The results establish screening leverage as a useful measure of response conditioning, rather than a universal single-variable error law.

Zenodo (CERN European Organization for Nuclear Research)
University of Babylon (IQ)
Peace, Justice and strong institutions
Openalex Percentile: Top 8%
Probabilistic and Robust Engineering Design
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