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Millikelvin-precision temperature sensing for advanced cryogenic detectors

Millikelvin-precision temperature sensing for advanced cryogenic detectors

来源:Arxiv_logoArxiv
英文摘要

Precise temperature monitoring -- to the level of a few milli-Kelvin -- is essential for the operation of large-scale cryostats requiring a recirculation system. In particular, the performance of Liquid Argon Time Projection Chambers -- such as those planned for the DUNE experiment -- strongly relies on proper argon purification and mixing, which can be characterized by a sufficiently dense grid of high-precision temperature probes. In this article, we present a novel technique for the cross-calibration of Resistance Temperature Detectors in cryogenic liquids, developed as part of the temperature monitoring system for a DUNE prototype. This calibration has enabled the validation and optimization of the system's components, achieving an unprecedented precision of 2.5 mK.

Maria Antonova、Jordi Capó、Anselmo Cervera、Pablo Fernández、Miguel á. García-Peris、Xavier Pons

热工量测、热工自动控制

Maria Antonova,Jordi Capó,Anselmo Cervera,Pablo Fernández,Miguel á. García-Peris,Xavier Pons.Millikelvin-precision temperature sensing for advanced cryogenic detectors[EB/OL].(2025-06-06)[2025-07-25].https://arxiv.org/abs/2506.06022.点此复制

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