首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Measured velocity spectra and neutron densities of the PF2 ultracold-neutron beam ports at the Institut Laue-Langevin
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Measured velocity spectra and neutron densities of the PF2 ultracold-neutron beam ports at the Institut Laue-Langevin

机译:Laue-Langevin研究所PF2超冷中子束端口的测得的速度谱和中子密度

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摘要

Ultracold neutrons (UCNs) are a useful tool for fundamental physics experiments. They can be used to probe the lifetime of free neutrons, search for new CP violating processes and exotic interactions beyond the Standard Model, perform Ramsey spectroscopy, and carry out neutron-optical interference experiments. All of these experiments require high neutron count rates for good statistics. For optimal exploitation of experimental beam time, these experiments need to be prepared and, at times, even simulated in advance. To this end, it is crucial to know the velocity-dependent UCN flux at each beam position. Knowing the absolute neutron flux also allows for an absolute calibration of previously gathered data. Using the same time-of-fight experimental setup, we have measured the differential neutron flux of three out of the four UCN beam ports at the PF2 instrument at Insdtut Laue-Langevin, Grenoble. These beam ports are commonly used for UCN flux experiments and proof-of-principle tests.
机译:超冷中子(UCN)是基础物理实验的有用工具。它们可用于探测自由中子的寿命,寻找新的违反CP的过程和标准模型之外的奇特相互作用,执行拉姆西光谱法以及进行中子光干涉实验。所有这些实验都需要较高的中子计数率才能获得良好的统计数据。为了最佳利用实验束时间,需要准备这些实验,有时甚至需要预先模拟。为此,至关重要的是要知道每个光束位置的速度相关UCN通量。了解绝对中子通量还可以对先前收集的数据进行绝对校准。使用相同的战斗时间实验装置,我们在格勒诺布尔的Insdtut Laue-Langevin的PF2仪器上测量了四个UCN束端口中三个端口的差分中子通量。这些束端口通常用于UCN通量实验和原理验证测试。

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