Measurement of the anomalous precession frequency of the muon in the Fermilab Muon g2 Experiment

T. Albahri, A. Anastasi, A. Anisenkov,K. Badgley, S. Baeßler,I. Bailey,V. A. Baranov, E. Barlas-Yucel, T. Barrett, A. Basti,F. Bedeschi,M. Berz, M. Bhattacharya, H. P. Binney, P. Bloom,J. Bono, E. Bottalico,T. Bowcock, G. Cantatore, R. M. Carey, B. C. K. Casey,D. Cauz,R. Chakraborty, S. P. Chang,A. Chapelain, S. Charity,R. Chislett,J. Choi, Z. Chu,T. E. Chupp,S. Corrodi,L. Cotrozzi, J. D. Crnkovic,S. Dabagov, P. T. Debevec,S. Di Falco,P. Di Meo,G. Di Sciascio,R. Di Stefano,A. Driutti,V. N. Duginov, M. Eads,J. Esquivel,M. Farooq, R. Fatemi,C. Ferrari,M. Fertl, A. T. Fienberg,A. Fioretti,D. Flay, E. Frlež, N. S. Froemming,J. Fry,C. Gabbanini, M. D. Galati,S. Ganguly,A. Garcia, J. George, L. K. Gibbons,A. Gioiosa, K. L. Giovanetti, P. Girotti, W. Gohn, T. Gorringe, J. Grange, S. Grant,F. Gray,S. Haciomeroglu, T. Halewood-Leagas, D. Hampai, F. Han, J. Hempstead, A. T. Herrod, D. W. Hertzog,G. Hesketh, A. Hibbert, Z. Hodge, J. L. Holzbauer, K. W. Hong,R. Hong,M. Iacovacci,M. Incagli,P. Kammel,M. Kargiantoulakis,M. Karuza, J. Kaspar,D. Kawall, L. Kelton,A. Keshavarzi, D. Kessler,K. S. Khaw, Z. Khechadoorian,N. V. Khomutov,B. Kiburg, M. Kiburg, O. Kim, Y. I. Kim, B. King, N. Kinnaird, E. Kraegeloh, A. Kuchibhotla, N. A. Kuchinskiy, K. R. Labe,J. LaBounty,M. Lancaster,M. J. Lee,S. Lee, S. Leo, B. Li, D. Li, L. Li, I. Logashenko,A. Lorente Campos, A. Lucà, G. Lukicov,A. Lusiani,A. L. Lyon, B. MacCoy, R. Madrak, K. Makino,F. Marignetti, S. Mastroianni,J. P. Miller, S. Miozzi, W. M. Morse,J. Mott,A. Nath,H. Nguyen, R. Osofsky, S. Park, G. Pauletta, G. M. Piacentino, R. N. Pilato,K. T. Pitts, B. Plaster, D. Počanić,N. Pohlman, C. C. Polly, J. Price,B. Quinn,N. Raha, S. Ramachandran, E. Ramberg, J. L. Ritchie,B. L. Roberts, D. L. Rubin, L. Santi, C. Schlesier,A. Schreckenberger,Y. K. Semertzidis, D. Shemyakin,M. W. Smith,M. Sorbara, D. Stöckinger,J. Stapleton, C. Stoughton, D. Stratakis,T. Stuttard, H. E. Swanson, G. Sweetmore, D. A. Sweigart,M. J. Syphers,D. A. Tarazona, T. Teubner,A. E. Tewsley-Booth, K. Thomson,V. Tishchenko,N. H. Tran, W. Turner,E. Valetov, D. Vasilkova,G. Venanzoni,T. Walton, A. Weisskopf, L. Welty-Rieger, P. Winter, A. Wolski, W. Wu

Physical Review D(2021)

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摘要
The Muon g-2 Experiment at Fermi National Accelerator Laboratory (FNAL) has measured the muon anomalous precession frequency $\omega_a$ to an uncertainty of 434 parts per billion (ppb), statistical, and 56 ppb, systematic, with data collected in four storage ring configurations during its first physics run in 2018. When combined with a precision measurement of the magnetic field of the experiment's muon storage ring, the precession frequency measurement determines a muon magnetic anomaly of $a_{\mu}({\rm FNAL}) = 116\,592\,040(54) \times 10^{-11}$ (0.46 ppm). This article describes the multiple techniques employed in the reconstruction, analysis and fitting of the data to measure the precession frequency. It also presents the averaging of the results from the eleven separate determinations of \omega_a, and the systematic uncertainties on the result.
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fermilab muon,anomalous precession frequency
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