JMP0X1B Research

Paper 028 / Application 005 / June 13, 2026

CryoBus: A Spacecraft Superconducting Power and Magnetic Subsystem Design Toolchain

From speculative superconductivity prompts to conservative cryogenic engineering

01 / Abstract

Abstract

CryoBus is a proposed JMP0X1B toolchain for superconducting spacecraft subsystems. It does not assume unverified room-temperature superconductivity. Instead, it models known cryogenic conductors, quench safety, current distribution, thermal load, magnetic cleanliness, mass trades, and technology-readiness gates. The toolchain translates the superconducting subsystem paper into executable engineering analysis.

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.

\[ \Delta M=M_{\mathrm{copper}}-(M_{\mathrm{HTS}}+M_{\mathrm{cryo}}+M_{\mathrm{shield}}+M_{\mathrm{quench}}), \]
\[ E_B=\frac{1}{2}LI^2,\qquad Q_{\mathrm{lift}}=\frac{Q_{\mathrm{cold}}}{\eta_{\mathrm{cryo}}(T)}. \]

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

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

04 / Evidence Plan

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

04 / Files

Paper Files

The PDF is generated from the LaTeX source. Both are published for auditability and future revision.