Precision measurement of the electron energy-loss function in tritium and deuterium gas for the KATRIN experiment

The KATRIN experiment is designed for a direct and model-independent determination of the effective electron anti-neutrino mass via a high-precision measurement of the tritium β -decay endpoint region with a sensitivity on m ν of 0.2  eV / c 2 (90% CL). For this purpose, the β -electrons from a high...

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Veröffentlicht in:Eur.Phys.J.C 2021-07, Vol.81 (7), p.1-16, Article 579
Hauptverfasser: Beglarian, A., Behrens, J., Berlev, A., Besserer, U., Bieringer, B., Bornschein, B., Bornschein, L., Böttcher, M., Caldwell, T. S., Carney, R. M. D., Chilingaryan, S., Choi, W., Debowski, K., Deffert, M., Descher, M., Barrero, D. Díaz, Doe, P. J., Dragoun, O., Drexlin, G., Eitel, K., Ellinger, E., Engel, R., Felden, A., Formaggio, J. A., Franklin, G. B., Friedel, F., Fulst, A., Gil, W., Groh, S., Grössle, R., Gumbsheimer, R., Haußmann, N., Heizmann, F., Helbing, K., Hickford, S., Hiller, R., Hillesheimer, D., Hinz, D., Höhn, T., Houdy, T., Jansen, A., Karl, C., Kellerer, J., Kleesiek, M., Köllenberger, L., Korzeczek, M., Kovalík, A., Krasch, B., Le, T. L., Lokhov, A., Machatschek, M., Malcherek, E., Mark, M., Marsteller, A., Melzer, C., Menshikov, A., Mertens, S., Mostafa, J., Müller, K., Oelpmann, P., Parno, D. S., Poon, A. W. P., Poyato, J. M. L., Priester, F., Ranitzsch, P. C.-O., Robertson, R. G. H., Rodejohann, W., Rodenbeck, C., Röllig, M., Ryšavý, M., Sack, R., Schäfer, P., Schaller (née Pollithy), A., Schimpf, L., Schlösser, K., Schneidewind, S., Schrank, M., Schulz, B., Schwachtgen, C., Šefčík, M., Seitz-Moskaliuk, H., Sibille, V., Siegmann, D., Slezák, M., Sturm, M., Sun, M., Tcherniakhovski, D., Titov, N., Tkachev, I., Urban, K., Valerius, K., Hernández, A. P. Vizcaya, Welte, S., Wendel, J., Wilkerson, J. F., Wolf, J., Wüstling, S., Xu, W., Zadoroghny, S., Zeller, G.
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Sprache:eng
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Zusammenfassung:The KATRIN experiment is designed for a direct and model-independent determination of the effective electron anti-neutrino mass via a high-precision measurement of the tritium β -decay endpoint region with a sensitivity on m ν of 0.2  eV / c 2 (90% CL). For this purpose, the β -electrons from a high-luminosity windowless gaseous tritium source traversing an electrostatic retarding spectrometer are counted to obtain an integral spectrum around the endpoint energy of 18.6 keV. A dominant systematic effect of the response of the experimental setup is the energy loss of β -electrons from elastic and inelastic scattering off tritium molecules within the source. We determined the energy-loss function in-situ with a pulsed angular-selective and monoenergetic photoelectron source at various tritium-source densities. The data was recorded in integral and differential modes; the latter was achieved by using a novel time-of-flight technique. We developed a semi-empirical parametrization for the energy-loss function for the scattering of 18.6-keV electrons from hydrogen isotopologs. This model was fit to measurement data with a 95% T 2 gas mixture at 30 K, as used in the first KATRIN neutrino-mass analyses, as well as a D 2 gas mixture of 96% purity used in KATRIN commissioning runs. The achieved precision on the energy-loss function has abated the corresponding uncertainty of σ ( m ν 2 ) < 10 - 2 eV 2 [ 1 ] in the KATRIN neutrino-mass measurement to a subdominant level.
ISSN:1434-6044
1434-6052
DOI:10.1140/epjc/s10052-021-09325-z