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Method and apparatus for the detection of neutrinos and use of neutrino detector

机译:中微子的检测方法和装置以及中微子检测器的使用

摘要

Neutrinos are detected by allowing them to scatter on nuclei contained in a detector and by detecting the recoil of the nuclei. Because the probability of a neutrino being scattered is very low the probability is very high that a neutrino will only cause recoil of a single nucleus. On the other hand background radiation is likely to cause the recoil of a large number of electrons and/or nuclei so that neutrino scattering can be detected by distinguishing between the recoil of a single nucleus and the simultaneous recoil of a plurality of electrons/nuclei. In one form of the detector the nuclei are present as minute superconducting metal grains which are held in the superconducting state. At low temperatures the grains have a very low specific heat and the scattering of a neutrino will cause a single grain to heat up and change from the superconducting to the normal conducting state. This change will result in a perturbation of an applied magnetic field, as a result of the Meissner effect, and the perturbation of the magnetic field can be detected, for example as an e.m. f. induced in a detector loop. Several different superconducting arrangements are described. A semiconductor arrangement for detecting nuclear recoil is also described. The neutrino detector can be used, among other things, for monitoring reactor activity and for prospecting for subterranean deposits of radioactive elements, minerals found in association with these elements, and oil and gas.
机译:通过让中微子散布在检测器中包含的核上并检测其后坐力来检测中微子。由于中微子散布的可能性非常低,因此中微子只会引起单个原子核反冲的可能性非常高。另一方面,背景辐射很可能引起大量电子和/或原子核的反冲,从而通过区分单个原子核的反冲和多个电子/原子核的同时反冲可以检测中微子散射。在检测器的一种形式中,原子核以保持在超导状态的微小超导金属颗粒存在。在低温下,颗粒具有非常低的比热,中微子的散射将导致单个颗粒变热并从超导状态转变为正常导电状态。由于迈斯纳效应,这种变化将导致所施加的磁场的扰动,并且可以例如例如以e.m检测磁场的扰动。 F。在检测器回路中引起。描述了几种不同的超导布置。还描述了一种用于检测核后坐力的半导体装置。中微子检测器可用于监测反应堆的活动以及探明地下放射性元素,与这些元素相关的矿物以及石油和天然气的沉积物。

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