4.8 Article

Measurement of the Positive Muon Anomalous Magnetic Moment to 0.46 ppm

期刊

PHYSICAL REVIEW LETTERS
卷 126, 期 14, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.126.141801

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资金

  1. Fermi Research Alliance, LLC (FRA) [DEAC02-07CH11359]
  2. Department of Energy office of High Energy Physics (USA)
  3. Department of Energy office of Nuclear Physics (USA)
  4. National Science Foundation (USA)
  5. Istituto Nazionale di Fisica Nucleare (Italy)
  6. Science and Technology Facilities Council (UK)
  7. Royal Society (UK)
  8. European Union's Horizon 2020 research and innovation program under the Marie Sklodowska-Curie Grant [690835, 734303]
  9. National Natural Science Foundation of China [11975153, 12075151]
  10. MSIP (Republic of Korea)
  11. NRF (Republic of Korea)
  12. German Research Foundation (DFG) through the Cluster of Excellence PRISMAthorn [EXC 2118/1, 39083149]
  13. [IBS-R017-D1]
  14. Science and Technology Facilities Council [ST/S000879/1] Funding Source: researchfish
  15. STFC [1643595] Funding Source: UKRI

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The experiment presented the first results of the Fermilab National Accelerator Laboratory (FNAL) Muon g - 2 Experiment for the positive muon magnetic anomaly a(mu) (g(mu) - 2)/2, which determined the anomaly from precision measurements of two angular frequencies. The result showed a deviation of 3.3 standard deviations from the standard model prediction, in agreement with previous measurements, increasing the tension between experiment and theory.
We present the first results of the Fermilab National Accelerator Laboratory (FNAL) Muon g - 2 Experiment for the positive muon magnetic anomaly a(mu) (g(mu) - 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 omega(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 (omega) over tilde (p)' in a spherical water sample at 34.7 degrees C. The ratio omega(a)/(omega) over tilde (p)', together with known fundamental constants, determines a(mu)(FNAL) = 116 592 040(54) x 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 mu(+) and mu(-), the new experimental average of a(mu)(Exp) = 116 592 061(41) x 10(-11) (0.35 ppm) increases the tension between experiment and theory to 4.2 standard deviations.

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