Cryogenic Materials Repository: A Public Resource and New Measurements for Cryogenic Research Applications

Fuente: arXiv
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Hauptverfasser: Nachman, Henry E., Desai, Oorie, Galitzki, Nicholas, Lee, Daniel, Lloyd, JB, Nandi, Tannishtha, Pagni, Ani, Radebaugh, Ray, Shaw, Elle C.
Format: Preprint
Veröffentlicht: 2025
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author Nachman, Henry E.
Desai, Oorie
Galitzki, Nicholas
Lee, Daniel
Lloyd, JB
Nandi, Tannishtha
Pagni, Ani
Radebaugh, Ray
Shaw, Elle C.
author_facet Nachman, Henry E.
Desai, Oorie
Galitzki, Nicholas
Lee, Daniel
Lloyd, JB
Nandi, Tannishtha
Pagni, Ani
Radebaugh, Ray
Shaw, Elle C.
contents Low-temperature systems play a vital role in a variety of scientific research applications, including the next generation of cosmology and astrophysics telescopes. More ambitious cryogenic applications require precise estimates of the thermal conductivity of materials and thermal joints to meet project goals. We present the development of the Cryogenic Material Repository (CMR), a public GitHub repository of cryogenic material properties data created to support and enable researchers across scientific disciplines to accurately and efficiently design and assess cryogenic systems. We also present updated sub-Kelvin thermal conductivity results for select carbon fiber reinforced polymer and aluminum alloy samples.
format Preprint
id arxiv_https___arxiv_org_abs_2509_23422
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Cryogenic Materials Repository: A Public Resource and New Measurements for Cryogenic Research Applications
Nachman, Henry E.
Desai, Oorie
Galitzki, Nicholas
Lee, Daniel
Lloyd, JB
Nandi, Tannishtha
Pagni, Ani
Radebaugh, Ray
Shaw, Elle C.
Instrumentation and Methods for Astrophysics
Instrumentation and Detectors
Low-temperature systems play a vital role in a variety of scientific research applications, including the next generation of cosmology and astrophysics telescopes. More ambitious cryogenic applications require precise estimates of the thermal conductivity of materials and thermal joints to meet project goals. We present the development of the Cryogenic Material Repository (CMR), a public GitHub repository of cryogenic material properties data created to support and enable researchers across scientific disciplines to accurately and efficiently design and assess cryogenic systems. We also present updated sub-Kelvin thermal conductivity results for select carbon fiber reinforced polymer and aluminum alloy samples.
title Cryogenic Materials Repository: A Public Resource and New Measurements for Cryogenic Research Applications
topic Instrumentation and Methods for Astrophysics
Instrumentation and Detectors
url https://arxiv.org/abs/2509.23422