NoMoS: An R × B drift momentum spectrometer for beta decay studies

Author:

Moser Daniel,Abele Hartmut,Bosina Joachim,Fillunger Harald,Soldner Torsten,Wang Xiangzun,Zmeskal Johann,Konrad Gertrud

Abstract

The beta decay of the free neutron provides several probes to test the Standard Model of particle physics as well as to search for extensions thereof. Hence, multiple experiments investigating the decay have already been performed, are under way or are being prepared. These measure the mean lifetime, angular correlation coefficients or various spectra of the charged decay products (proton and electron). NoMoS, the neutron decay products mo___mentum spectrometer, presents a novel method of momentum spectroscopy: it utilizes the R ×B drift effect to disperse charged particles dependent on their momentum in an uniformly curved magnetic field. This spectrometer is designed to precisely measure momentum spectra and angular correlation coefficients in free neutron beta decay to test the Standard Model and to search for new physics beyond. With NoMoS, we aim to measure inter alia the electron-antineutrino correlation coefficient a and the Fierz interference term b with an ultimate precision of Δa/a < 0.3% and Δb < 10−3 respectively. In this paper, we present the measurement principles, discuss measurement uncertainties and systematics, and give a status update.

Publisher

EDP Sciences

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. First Observation of Cyclotron Radiation from MeV-Scale e± following Nuclear β Decay;Physical Review Letters;2023-08-23

2. First results for the pLGAD sensor for low-penetrating particles;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;2022-10

3. Limit on the Fierz Interference Term b from a Measurement of the Beta Asymmetry in Neutron Decay;Physical Review Letters;2020-09-09

4. Decay microscope for trapped neon isotopes;Physical Review C;2020-03-09

5. Design of the magnet system of the neutron decay facility PERC;EPJ Web of Conferences;2019

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