JMP0X1B Research

Paper 033 / Application 010 / June 13, 2026

Digital Twins for Capacitor, Cavity, and Cryogenic Subsystem Experiments

A shared simulation and telemetry substrate for frontier physics and space engineering

01 / Abstract

Abstract

This paper proposes a digital-twin platform spanning three JMP0X1B research domains: electrostatic capacitor nulls, microwave cavity closure audits, and cryogenic superconducting subsystems. The twin combines geometry, fields, thermal behavior, control state, telemetry, artifact ledgers, and failure injection. Its purpose is not to make simulations authoritative; it is to make discrepancies between model and apparatus visible.

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.

\[ r_t=y_t-h(x_t),\qquad \mathrm{DriftScore}=r_t^T\Sigma_t^{-1}r_t. \]
\[ \mathrm{Twin}=\mathrm{Geometry}+\mathrm{Physics}+\mathrm{Controls}+\mathrm{Telemetry}+\mathrm{Ledger}. \]

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

This section is included in the source manuscript and the PDF build for review.

02 / Model

This section is included in the source manuscript and the PDF build for review.

03 / Claims

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04 / Evidence Plan

This section is included in the source manuscript and the PDF build for review.

04 / Files

Paper Files

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