JMP0X1B Research

Paper 019 / June 13, 2026

A Strain-Electrodynamics Materials Atlas for Piezoelectric Superconductivity Claims

Separating contact artifacts, strain tuning, transient conduction, and full superconducting evidence

01 / Abstract

Abstract

The coated-wire superconductivity replication protocol defines nested hypotheses from artifact to full superconducting evidence. This paper extends it into a materials atlas. The atlas varies wire composition, piezoelectric coating, strain waveform, current pulse, temperature, magnetic field, and contact geometry. Each sample becomes a signed data product with transport, magnetic, thermal, and strain channels. The intended result is a publishable negative atlas or a clearly escalated anomaly candidate.

02 / Frame

Research Frame

This landing page publishes the paper as an auditable source bundle. The PDF carries the full mathematical argument, claims, evidence plan, implementation surface, and release notes.

\[ S=(M_{\mathrm{wire}},M_{\mathrm{coat}},\Gamma_{\mathrm{interface}},\epsilon(t),I(t),T,B,C_{\mathrm{contact}}). \]
\[ H_3 \Rightarrow R\to 0 \;\wedge\; \chi_{\mathrm{dia}}<0 \;\wedge\; J_c>J_{c,\min}\;\wedge\;\partial R/\partial B \ne 0 . \]

03 / Structure

Paper Structure

The manuscript follows the JMP0X1B discipline: state the problem, formalize the model, name the claims, and publish enough source material for review and revision.

01 / Problem

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02 / Model

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03 / Claims

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04 / Evidence Plan

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04 / Files

Paper Files

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