Accès ouvert déclaré
2023
preprint
Measurement of the Positive Muon Anomalous Magnetic Moment to 0.20 ppm
D. P. Aguillard, T. Albahri, D. Allspach, A. V. Anisenkov, K. Badgley, S. Baeßler, I. Bailey, Laura Bailey, V. A. Baranov, E. Barlas-Yucel, T. Barrett, E. Barzi, F. Bedeschi, Martin Berz, Meghna Bhattacharya, H. P. Binney, P. Bloom, J. Bono, E. Bottalico, T. J. V. Bowcock, S. Braun, M. Bressler, G. Cantatore, R. M. Carey, B. C. K. Casey, D. Cauz, R. Chakraborty, A. Chapelain, S. Chappa, S. Charity, C. Chen, M.-T. Cheng, R. T. Chislett, Z. Chu, T. E. Chupp, C. Claessens, M. E. Convery, S. Corrodi, L. Cotrozzi, J. Crnkovic, С.Б. Дабагов, P. T. Debevec, S. Di Falco, G. Di Sciascio, B. Drendel, A. Driutti, V. N. Duginov, M. Eads, A. Edmonds, J. Esquivel, M. Farooq, R. Fatemi, C. Ferrari, M. Fertl, A. T. Fienberg, A. Fioretti, D. Flay, S. B. Foster, H. Friedsam, N. S. Froemming, C. Gabbanini, I. Gaines, M. D. Galati, S. Ganguly, A. Garcı́a, J. George, L. Gibbons, A. Gioiosa, K. L. Giovanetti, P. Girotti, W. Gohn, L. Goodenough, T. P. Gorringe, J. Grange, S. Grant, F. Gray, Selçuk Hacıömeroğlu, T. Halewood-leagas, D. Hampai, F. Han, J. Hempstead, D. W. Hertzog, G. G. Hesketh, E. Hess, Angela Hibbert, Z. Hodge, K. W. Hong, R. Hong, T. Hu, Y. Hu, M. Iacovacci, M. Incagli, P. Kammel, M. Kargiantoulakis, M. Karuza, J. Kašpar, D. Kawall, L. Kelton, A. Keshavarzi, D. Kessler, Kim Siang Khaw, Z. Khechadoorian, N. V. Khomutov, B. Kiburg, M. Kiburg, On Kim, N. Kinnaird, E. Kraegeloh, В. А. Крылов, N. A. Kuchinskiy, K. R. Labe, J. LaBounty, M. Lancaster, Soohyung Lee, Bingzhi Li, D. Li, L. Li, I. Logashenko, A. Lorente Campos, Z. H. Lu, A. Lucà, G. Lukicov, A. Lusiani, A. L. Lyon, B. MacCoy, R. Madrak, Kyoko Makino, S. Mastroianni, J. Miller, S. Miozzi, B. Mitra, James P. Morgan, W. M. Morse, J. Mott, A. Nath, J. Ng, H. Nguyen, Y. Oksuzian, Zhanibek Omarov, R. Osofsky, S. Park, G. Pauletta, G. M. Piacentino, Riccardo Nunzio Pilato, K. Pitts, B. Plaster, D. Počanić, Nicholas A. Pohlman, C. C. Polly, J. D. Price, B. Quinn, Mahmood Qureshi, S. Ramachandran, E. Ramberg, R. Reimann, D. L. Rubin, L. Santi, C. Schlesier, A. Schreckenberger, Yannis K. Semertzidis, D.N. Shemyakin, M. Sorbara, J. Stapleton, D. Still, D. Stöckinger, Chris Stoughton, D. Stratakis, H. E. Swanson, G. Sweetmore, D. A. Sweigart, M. Syphers, D. A. Tarazona, T. Teubner, A. E. Tewsley-Booth, V. Tishchenko, N. H. Tran, W. Turner, Eremey Valetov, D. Vasilkova, G. Venanzoni, V. P. Volnykh, T. Walton, A. Weisskopf, L. Welty-Rieger, P. Winter, Y. Wu, B. Yu, M. Yucel, Y. Zeng, C. Zhang
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Le résumé fourni par la source
We present a new measurement of the positive muon magnetic anomaly, $a_μ\equiv (g_μ- 2)/2$, from the Fermilab Muon $g\!-\!2$ Experiment using data collected in 2019 and 2020. We have analyzed more than 4 times the number of positrons from muon decay than in our previous result from 2018 data. The systematic error is reduced by more than a factor of 2 due to better running conditions, a more stable beam, and improved knowledge of the magnetic field weighted by the muon distribution, $\tildeω'^{}_p$, and of the anomalous precession frequency corrected for beam dynamics effects, $ω_a$. From the ratio $ω_a / \tildeω'^{}_p$, together with precisely determined external parameters, we determine $a_μ= 116\,592\,057(25) \times 10^{-11}$ (0.21 ppm). Combining this result with our previous result from the 2018 data, we obtain $a_μ\text{(FNAL)} = 116\,592\,055(24) \times 10^{-11}$ (0.20 ppm). The new experimental world average is $a_μ(\text{Exp}) = 116\,592\,059(22)\times 10^{-11}$ (0.19 ppm), which represents a factor of 2 improvement in precision.
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Les sujets associés
Particle physics theoretical and experimental studiesSuperconducting Materials and ApplicationsParticle accelerators and beam dynamics