4.2 Article Proceedings Paper

Quasiparticle Diffusion in CRESST Light Detectors

期刊

JOURNAL OF LOW TEMPERATURE PHYSICS
卷 184, 期 1-2, 页码 323-329

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SPRINGER/PLENUM PUBLISHERS
DOI: 10.1007/s10909-016-1512-1

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Low temperature detector; Quasiparticle diffusion; Transition edge sensor; Dark matter searches; Phonon collectors

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CRESST-II is a direct dark matter experiment that uses scintillating calorimeters to detect WIMP-induced nuclear scatter processes. Heat and light signals are read out with tungsten transition edge sensors (TESs) that are optimized toward their sensitivity to non-thermal phonons. The usage of superconducting thin film structures (e.g., aluminum) serving as phonon collectors to increase the collection area for this signal component is an approach to improve the sensitivity of the TES. The performance of the phonon collectors depends on the material properties and the quality achieved in the production process. We optimized the size of the phonon collectors for the given quality of CRESST-II light detectors. The diffusion lengths measured in this work are (1 mm) and show a strong correlation to the Residual Resistivity Ratio of the respective films. First tests of CRESST-II light detectors with larger as well as thicker phonon collectors individually show improvements in the measured pulse height of 30 %.

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