Measurement of Muon Capture on the Proton to 1% Precision and Determination of the Pseudoscalar Coupling g_P

The MuCap experiment at the Paul Scherrer Institute has measured the rate L_S of muon capture from the singlet state of the muonic hydrogen atom to a precision of 1%. A muon beam was stopped in a time projection chamber filled with 10-bar, ultra-pure hydrogen gas. Cylindrical wire chambers and a seg...

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Veröffentlicht in:arXiv.org 2013-01
Hauptverfasser: Andreev, V A, Banks, T I, Carey, R M, Case, T A, Clayton, S M, Crowe, K M, Deutsch, J, Egger, J, Freedman, S J, Ganzha, V A, Gorringe, T, Gray, F E, Hertzog, D W, Hildebrandt, M, Kammel, P, Kiburg, B, Knaack, S, Kravtsov, P A, Krivshich, A G, Lauss, B, Lynch, K R, Maev, E M, Maev, O E, Mulhauser, F, Petitjean, C, Petrov, G E, Prieels, R, Schapkin, G N, Semenchuk, G G, Soroka, M A, Tishchenko, V, Vasilyev, A A, Vorobyov, A A, Vznuzdaev, M E, Winter, P
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Sprache:eng
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Zusammenfassung:The MuCap experiment at the Paul Scherrer Institute has measured the rate L_S of muon capture from the singlet state of the muonic hydrogen atom to a precision of 1%. A muon beam was stopped in a time projection chamber filled with 10-bar, ultra-pure hydrogen gas. Cylindrical wire chambers and a segmented scintillator barrel detected electrons from muon decay. L_S is determined from the difference between the mu- disappearance rate in hydrogen and the free muon decay rate. The result is based on the analysis of 1.2 10^10 mu- decays, from which we extract the capture rate L_S = (714.9 +- 5.4(stat) +- 5.1(syst)) s^-1 and derive the proton's pseudoscalar coupling g_P(q^2_0 = -0.88 m^2_mu) = 8.06 +- 0.55.
ISSN:2331-8422
DOI:10.48550/arxiv.1210.6545