Hunting keV sterile neutrinos with KATRIN: building the first TRISTAN module

Author:

Houdy T,Alborini A,Altenmüller K,Biassoni M,Bombelli L,Brunst T,Carminati M,Descher M,Fink D,Fiorini C,Gugiatti M,Huber A,King P,Korzeczek M,Lebert M,Lechner P,Mertens S,Pavan M,Pozzi S,Radford D C,Sedlak A,Siegmann D,Urban K,Wolf J

Abstract

Abstract The KATRIN (Karlsruhe Tritium Neutrino) experiment investigates the energetic endpoint of the tritium beta-decay spectrum to determine the effective mass of the electron anti-neutrino. The collaboration has reported a first mass measurement result at this TAUP-2019 conference. The TRISTAN project aims at detecting a keV-sterile neutrino signature by measuring the entire tritium beta-decay spectrum with an upgraded KATRIN system. One of the greatest challenges is to handle the high signal rates generated by the strong activity of the KATRIN tritium source while maintaining a good energy resolution. Therefore, a novel multi-pixel silicon drift detector and read-out system are being designed to handle rates of about 100 Mcps with an energy resolution better than 300 eV (FWHM). This report presents succinctly the KATRIN experiment, the TRISTAN project, then the results of the first 7-pixels prototype measurement campaign and finally describes the construction of the first TRISTAN module composed of 166 SDD-pixels as well as its implementation in KATRIN experiment.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

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1. Cosmological Neutrino N-Body Simulations of Dark Matter Halo;Universe;2023-05-18

2. Sensitivity of future tritium decay experiments to New Physics;Journal of High Energy Physics;2023-03-20

3. Towards the TRISTAN detector: Characterization of a 47-pixel monolithic SDD array;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;2022-02

4. Design and characterization of Kerberos: a 48-channel analog pulse processing and data acquisition platform;Journal of Instrumentation;2021-07-01

5. Limits on active-sterile neutrino mixing parameters using heavy nuclei abundances;International Journal of Modern Physics E;2021-04

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