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Measurement of the distribution of 207Bi depositions on calibration sources for SuperNEMO
File | Description | Size | Format | |
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2103.14429v1.pdf | Working paper | 7.11 MB | Adobe PDF | View/Open |
Title: | Measurement of the distribution of 207Bi depositions on calibration sources for SuperNEMO |
Authors: | Arnold, R Augier, C Barabash, AS Basharina-Freshville, A Birdsall, E Blondel, S Bongrand, M Boursette, D Breier, R Brudanin, V Busto, J Calvez, S Cerna, C Cesar, JP Ceschia, M Chapon, A Chauveau, E Chopra, A Dawson, L Capua, SD Duchesneau, D Durand, D Eurin, G Evans, JJ Filosofov, D Flack, R Franchini, P Girard-Carillo, C Gómez, H Guillon, B Guzowski, P Hoballah, M Hodák, R Hussain, MH Jeremie, A Jullian, S Kaizer, J Klimenko, A Kochetov, O Konovalov, SI Kovalenko, V Lalanne, D Lang, K Lemière, Y Noblet, TL Liptak, Z Liu, XR Loaiza, P Macko, M Macolino, C Marquet, C Mauger, F Minotti, A Mora, Y Morgan, B Mott, J Nemchenok, I Nomachi, M Nova, F Nowacki, F Ohsumi, H Oliviéro, G Pahlka, RB Palušová, V Patrick, C Perrot, F Pin, A Piquemal, F Povinec, P Proga, M Quinn, WS Ramachers, YA Remoto, A Reyss, JL Saakyan, R Salamatin, A Salazar, R Sarazin, X Sedgbeer, J Shitov, Y Simard, L Šimkovic, F Smolnikov, A Söldner-Rembold, S Štekl, I Suhonen, J Sutton, CS Szklarz, G Tedjditi, H Thomas, J Timkin, V Torre, S Tretyak, VI Tretyak, VI Umatov, VI Vilela, C Vorobel, V Waters, D Xie, F Žemlička, J |
Item Type: | Working Paper |
Abstract: | The SuperNEMO experiment will search for neutrinoless double-beta decay ($0\nu\beta\beta$), and study the Standard-Model double-beta decay process ($2\nu\beta\beta$). The SuperNEMO technology can measure the energy of each of the electrons produced in a double-beta ($\beta\beta$) decay, and can reconstruct the topology of their individual tracks. The study of the double-beta decay spectrum requires very accurate energy calibration to be carried out periodically. The SuperNEMO Demonstrator Module will be calibrated using 42 calibration sources, each consisting of a droplet of $^{207}$Bi within a frame assembly. The quality of these sources, which depends upon the entire $^{207}$Bi droplet being contained within the frame, is key for correctly calibrating SuperNEMO's energy response. In this paper, we present a novel method for precisely measuring the exact geometry of the deposition of $^{207}$Bi droplets within the frames, using Timepix pixel detectors. We studied 49 different sources and selected 42 high-quality sources with the most central source positioning. |
Issue Date: | 26-Mar-2021 |
URI: | http://hdl.handle.net/10044/1/88129 |
Publisher: | arXiv |
Copyright Statement: | ©2021 The Author(s) |
Keywords: | physics.ins-det physics.ins-det physics.ins-det physics.ins-det |
Notes: | 15 pages, 10 figures, to be submitted to JINST |
Publication Status: | Published |
Appears in Collections: | Physics High Energy Physics Faculty of Natural Sciences |