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Titlebook: Low Temperature Detectors for Neutrinos and Dark Matter; Proceedings of a Wor Klaus Pretzl,Norbert Schmitz,Leo Stodolsky Conference proceed

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发表于 2025-3-21 17:29:32 | 显示全部楼层 |阅读模式
书目名称Low Temperature Detectors for Neutrinos and Dark Matter
副标题Proceedings of a Wor
编辑Klaus Pretzl,Norbert Schmitz,Leo Stodolsky
视频video
图书封面Titlebook: Low Temperature Detectors for Neutrinos and Dark Matter; Proceedings of a Wor Klaus Pretzl,Norbert Schmitz,Leo Stodolsky Conference proceed
描述For the last few years astrophysicists and elementary particle physicists have been working jointly on the following fascinating phenomena: 1. The solar neutrino puzzle and the question: What happens to the neutrinos on their way from the sun to the earth? 2. The growing evidence that our universe is filled with about 10 times more matter than is visible and the question: What is dark matter made of? 3. The supernovae explosions and the question: What do neutrinos tell us about such explosions and vice versa? The experimental investigation of these phenomena is difficult and involves unconventional techniques. These are presently under development, and bring together such seemingly disparate disciplines as astrophysics and elementary particle physics on the one hand and superconductivity and solid-state physics on the other. This book contains the proceedings of a workshop held in March 1987 at which the above subjects and their experimental investigation were discussed. The proposed experimental methods are very new. They involve frontier developments in low temperature and solid-state physics. The book should be useful to researchers and students who actively work on these subjec
出版日期Conference proceedings 1987
关键词Supernova; astrophysics; earth; solid-state physics; sun; superconductivity; temperature
版次1
doihttps://doi.org/10.1007/978-3-642-72959-1
isbn_softcover978-3-642-72961-4
isbn_ebook978-3-642-72959-1
copyrightSpringer-Verlag Berlin Heidelberg 1987
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发表于 2025-3-22 00:05:26 | 显示全部楼层
Investigation of Superconducting Tin Granules for a Low-Energy Neutrino or Dark Matter Detector,ld. The granules were rotated around an axis perpendicular to the magnetic field axis and the superheating and supercooling fields were determined. We observed that each granule exhibits its own characteristic superheating and supercooling field which strongly depends on the rotational angle. For gr
发表于 2025-3-22 01:47:26 | 显示全部楼层
SQUID Detection of Superheated Granules,st, the individual ‘flips‘ of ten 15.m radius tin grains were observed as the temperature was swept through the superheated superconducting — normal phase transition. In the second test, we were able to observe transitions induced by 90 keV .-rays in a colloid of 5 .m radius grains in epoxy.
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Monte Carlo Simulation of a Double-Beta Decay Experiment with Superconducting-Superheated Tin Granue energy states of the isobars is abnormal, i.e. the usual β decay (A,Z) → (A, Z ± 1) is energetically forbidden -or very hindered because of selection rules-, leaving the ββ transition (A,Z) → (A, Z ± 2) as the only allowed way of decaying. In the nuclear tables one rrlay find up to 26 cases of β.β
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The Possible Impact of Thermal Detectors in Nuclear and Subnuclear Physics,produced by radioactivity. Another great contribution of calorimetry to fundamental physics was the experimental discovery that some energy was missing in beta decay of .Bi [2]. This fact was interpreted by W. Pauli in his famous letter of Dec. 4–1930 as due to the emission of a neutral particle lat
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Considerations on Front End Electronics for Bolometric Detectors with Resistive Readout,tests of silicon calorimeters have been performed at CERN and showed the feasibility of using such devices as photon detectors- Germanium, totally doped commercial thermometers have been also used as detectors for alpha particles [2], [3]. In collaboration with SGS, the main local semiconductor manu
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