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    Measurement of the positive muon anomalous magnetic moment to 0.46 ppm

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    Date Issued
    2021-04-09
    Publisher Version
    10.1103/PhysRevLett.126.141801
    Author(s)
    Abi, B.
    Albahri, T.
    Al-Kilani, S.
    Allspach, D.
    Alonzi, L.P.
    Anastasi, A.
    Anisenkov, A.
    Azfar, F.
    Badgley, K.
    Baeßler, S.
    Bailey, I.
    Baranov, V.A.
    Barlas-Yucel, E.
    Barrett, T.
    Barzi, E.
    Basti, A.
    Bedeschi, F.
    Behnke, A.
    Berz, M.
    Bhattacharya, M.
    Binney, H.P.
    Bjorkquist, R.
    Bloom, P.
    Bono, J.
    Bottalico, E.
    Bowcock, T.
    Boyden, D.
    Cantatore, G.
    Carey, Robert M.
    Carroll, J.
    Casey, B.C.K
    Cauz, D.
    Ceravolo, S.
    Chakraborty, R.
    Chang, S.P.
    Chapelain, A.
    Chappa, S.
    Charity, S.
    Chislett, R.
    Choi, J.
    Chu, Z.
    Chupp, T.E.
    Convery, M.E.
    Conway, A.
    Corradi, G.
    Corrodi, S.
    Cotrozzi, L.
    Crnkovic, J.D.
    Dabagov, S.
    De Lurgio, P.M.
    Debevec, P.T.
    Di Falco, S.
    Di Meo, P.
    Di Sciascio, G.
    Di Stefano, R.
    Drendel, B.
    Driutti, A.
    Duginov, V.N.
    Eads, M.
    Eggert, N.
    Epps, A.
    Esquivel, J.
    Farooq, M.
    Fatemi, R.
    Ferrari, C.
    Fertl, M.
    Fiedler, A.
    Fienberg, A.T.
    Fioretti, A.
    Flay, D.
    Foster, S.B.
    Friedsam, H.
    Frlež, E.
    Froemming, N.S.
    Fry, J.
    Fu, C.
    Gabbanini, C.
    Galati, M.D.
    Ganguly, S.
    Garcia, A.
    Gastler, D.E.
    George, J.
    Gibbons, L.K.
    Gioiosa, A.
    Giovanetti, K.L.
    Girotti, P.
    Gohn, W.
    Gorringe, T.
    Grange, J.
    Grant, S.
    Gray, F.
    Haciomeroglu, S.
    Hahn, D.
    Halewood-Leagas, T.
    Hampai, D.
    Han, F.
    Hazen, E.
    Hempstead, J.
    Henry, S.
    Herrod, A.T.
    Hertzog, D.W.
    Hesketh, G.
    Hibbert, A.
    Hodge, Z.
    Holzbauer, J.L.
    Hong, K.W.
    Hong, R.
    Iacovacci, M.
    Incagli, M.
    Johnstone, C.
    Johnstone, J.A.
    Kammel, P.
    Kargiantoulakis, M.
    Karuza, M.
    Kaspar, J.
    Kawall, D.
    Kelton, L.
    Keshavarzi, A.
    Kessler, D.
    Khaw, K.S.
    Khechadoorian, Z.
    Khomutov, N.V.
    Kiburg, B.
    Kiburg, M.
    Kim, O.
    Kim, S.C.
    Kim, Y.I.
    King, B.
    Kinnaird, N.
    Korostelev, M.
    Kourbanis, I.
    Kraegeloh, E.
    Krylov, V.A.
    Kuchibhotla, A.
    Kuchinskiy, N.A.
    Labe, K.R.
    LaBounty, J.
    Lancaster, M.
    Lee, M.J.
    Lee, S.
    Leo, S.
    Li, B.
    Li, D.
    Li, L.
    Logashenko, I.
    Lorente Campos, A.
    Lucà, A.
    Lukicov, G.
    Luo, G.
    Lusiani, A.
    Lyon, A.L.
    MacCoy, B.
    Madrak, R.
    Makino, K.
    Marignetti, F.
    Mastroianni, S.
    Maxfield, S.
    McEvoy, M.
    Merritt, W.
    Mikhailichenko, A.A.
    Miller, James P.
    Miozzi, S.
    Morgan, J.P.
    Morse, W.M.
    Mott, James
    Motuk, E.
    Nath, A.
    Newton, D.
    Nguyen, H.
    Oberling, M.
    Osofsky, R.
    Ostiguy, J.-F
    Park, S.
    Pauletta, G.
    Piacentino, G.M.
    Pilato, R.N.
    Pitts, K.T.
    Plaster, B.
    Počanić, D.
    Pohlman, N.
    Polly, C.C.
    Popovic, M.
    Price, J.
    Quinn, B.
    Raha, N.
    Ramachandran, S.
    Ramberg, E.
    Rider, N.T.
    Ritchie, J.L.
    Roberts, B.L.
    Rubin, D.L.
    Santi, L.
    Sathyan, D.
    Schellman, H.
    Schlesier, C.
    Schreckenberger, A.
    Semertzidis, Y.K.
    Shatunov, Y.M.
    Shemyakin, D.
    Shenk, M.
    Sim, D.
    Smith, M.W.
    Smith, A.
    Soha, A.K.
    Sorbara, M.
    Stöckinger, D.
    Stapleton, J.
    Still, D.
    Stoughton, C.
    Stratakis, D.
    Strohman, C.
    Stuttard, T.
    Swanson, H.E.
    Sweetmore, G.
    Sweigart, D.A.
    Syphers, M.J.
    Tarazona, D.A.
    Teubner, T.
    Tewsley-Booth, A.E.
    Thomson, K.
    Tishchenko, V.
    Tran, N.H.
    Turner, W.
    Valetov, E.
    Vasilkova, D.
    Venanzoni, G.
    Volnykh, V.P.
    Walton, T.
    Warren, M.
    Weisskopf, A.
    Welty-Rieger, L.
    Whitley, M.
    Winter, P.
    Wolski, A.
    Wormald, M.
    Wu, W.
    Yoshikawa, C.
    Muon g−2 Collaboration
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    Permanent Link
    https://hdl.handle.net/2144/44712
    Version
    Published version
    Citation (published version)
    B. Abi, T. Albahri, S. Al-Kilani, D. Allspach, L.P. Alonzi, A. Anastasi, A. Anisenkov, F. Azfar, K. Badgley, S. Baeßler, I. Bailey, V.A. Baranov, E. Barlas-Yucel, T. Barrett, E. Barzi, A. Basti, F. Bedeschi, A. Behnke, M. Berz, M. Bhattacharya, H.P. Binney, R. Bjorkquist, P. Bloom, J. Bono, E. Bottalico, T. Bowcock, D. Boyden, G. Cantatore, R.M. Carey, J. Carroll, B.C.K. Casey, D. Cauz, S. Ceravolo, R. Chakraborty, S.P. Chang, A. Chapelain, S. Chappa, S. Charity, R. Chislett, J. Choi, Z. Chu, T.E. Chupp, M.E. Convery, A. Conway, G. Corradi, S. Corrodi, L. Cotrozzi, J.D. Crnkovic, S. Dabagov, P.M. De Lurgio, P.T. Debevec, S. Di Falco, P. Di Meo, G. Di Sciascio, R. Di Stefano, B. Drendel, A. Driutti, V.N. Duginov, M. Eads, N. Eggert, A. Epps, J. Esquivel, M. Farooq, R. Fatemi, C. Ferrari, M. Fertl, A. Fiedler, A.T. Fienberg, A. Fioretti, D. Flay, S.B. Foster, H. Friedsam, E. Frlež, N.S. Froemming, J. Fry, C. Fu, C. Gabbanini, M.D. Galati, S. Ganguly, A. Garcia, D.E. Gastler, J. George, L.K. Gibbons, A. Gioiosa, K.L. Giovanetti, P. Girotti, W. Gohn, T. Gorringe, J. Grange, S. Grant, F. Gray, S. Haciomeroglu, D. Hahn, T. Halewood-Leagas, D. Hampai, F. Han, E. Hazen, J. Hempstead, S. Henry, A.T. Herrod, D.W. Hertzog, G. Hesketh, A. Hibbert, Z. Hodge, J.L. Holzbauer, K.W. Hong, R. Hong, M. Iacovacci, M. Incagli, C. Johnstone, J.A. Johnstone, 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, S.C. Kim, Y.I. Kim, B. King, N. Kinnaird, M. Korostelev, I. Kourbanis, E. Kraegeloh, V.A. Krylov, 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, G. Luo, A. Lusiani, A.L. Lyon, B. MacCoy, R. Madrak, K. Makino, F. Marignetti, S. Mastroianni, S. Maxfield, M. McEvoy, W. Merritt, A.A. Mikhailichenko, J.P. Miller, S. Miozzi, J.P. Morgan, W.M. Morse, J. Mott, E. Motuk, A. Nath, D. Newton, H. Nguyen, M. Oberling, R. Osofsky, J.-.F. Ostiguy, S. Park, G. Pauletta, G.M. Piacentino, R.N. Pilato, K.T. Pitts, B. Plaster, D. Počanić, N. Pohlman, C.C. Polly, M. Popovic, J. Price, B. Quinn, N. Raha, S. Ramachandran, E. Ramberg, N.T. Rider, J.L. Ritchie, B.L. Roberts, D.L. Rubin, L. Santi, D. Sathyan, H. Schellman, C. Schlesier, A. Schreckenberger, Y.K. Semertzidis, Y.M. Shatunov, D. Shemyakin, M. Shenk, D. Sim, M.W. Smith, A. Smith, A.K. Soha, M. Sorbara, D. Stöckinger, J. Stapleton, D. Still, C. Stoughton, D. Stratakis, C. Strohman, 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, V.P. Volnykh, T. Walton, M. Warren, A. Weisskopf, L. Welty-Rieger, M. Whitley, P. Winter, A. Wolski, M. Wormald, W. Wu, C. Yoshikawa, Muon g−2 Collaboration. 2021. "Measurement of the Positive Muon Anomalous Magnetic Moment to 0.46 ppm.." Phys Rev Lett, Volume 126, Issue 14, pp. 141801 - ?. https://doi.org/10.1103/PhysRevLett.126.141801
    Abstract
    We present the first results of the Fermilab National Accelerator Laboratory (FNAL) Muon g-2 Experiment for the positive muon magnetic anomaly a_{μ}≡(g_{μ}-2)/2. The anomaly is determined from the precision measurements of two angular frequencies. Intensity variation of high-energy positrons from muon decays directly encodes the difference frequency ω_{a} between the spin-precession and cyclotron frequencies for polarized muons in a magnetic storage ring. The storage ring magnetic field is measured using nuclear magnetic resonance probes calibrated in terms of the equivalent proton spin precession frequency ω[over ˜]_{p}^{'} in a spherical water sample at 34.7 °C. The ratio ω_{a}/ω[over ˜]_{p}^{'}, together with known fundamental constants, determines a_{μ}(FNAL)=116 592 040(54)×10^{-11} (0.46 ppm). The result is 3.3 standard deviations greater than the standard model prediction and is in excellent agreement with the previous Brookhaven National Laboratory (BNL) E821 measurement. After combination with previous measurements of both μ^{+} and μ^{-}, the new experimental average of a_{μ}(Exp)=116 592 061(41)×10^{-11} (0.35 ppm) increases the tension between experiment and theory to 4.2 standard deviations.
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    Published by the American Physical Society under the terms of the Creative Commons Attribution 4.0 International license. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI. Funded by SCOAP3.
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