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Электронный каталог: Aguillard, D. P. - Detailed Report on the Measurement of the Positive Muon Anomalous Magnetic Moment to 0.20 ppm
Aguillard, D. P. - Detailed Report on the Measurement of the Positive Muon Anomalous Magnetic Moment to 0.20 ppm
Статья
Автор: Aguillard, D. P.
Physical Review D [Electronic resource]: Detailed Report on the Measurement of the Positive Muon Anomalous Magnetic Moment to 0.20 ppm
б.г.
ISBN отсутствует
Автор: Aguillard, D. P.
Physical Review D [Electronic resource]: Detailed Report on the Measurement of the Positive Muon Anomalous Magnetic Moment to 0.20 ppm
б.г.
ISBN отсутствует
Статья
Aguillard, D.P.
Detailed Report on the Measurement of the Positive Muon Anomalous Magnetic Moment to 0.20 ppm / D.P.Aguillard, V.A.Baranov, V.N.Duginov, N.V.Khomutov, V.A.Krylov, N.A.Kuchinskiy, V.P.Volnykh, [a.o.] // Physical Review D [Electronic resource]. – 2024. – Vol. 110, No. 3. – P. 032009. – URL: https://doi.org/10.1103/PhysRevD.110.032009. – Bibliogr.: 96.
We present details on a new measurement of the muon magnetic anomaly, 𝑎&sub(𝜇)=(𝑔&sub(𝜇)−2)/2. The result is based on positive muon data taken at Fermilab’s Muon Campus during the 2019 and 2020 accelerator runs. The measurement uses 3.1 GeV/𝑐 polarized muons stored in a 7.1-m-radius storage ring with a 1.45 T uniform magnetic field. The value of 𝑎𝜇 is determined from the measured difference between the muon spin precession frequency and its cyclotron frequency. This difference is normalized to the strength of the magnetic field, measured using nuclear magnetic resonance. The ratio is then corrected for small contributions from beam motion, beam dispersion, and transient magnetic fields. We measure 𝑎&sub(𝜇)=116592057(25) × 10&sup(−11) (0.21 ppm). This is the world’s most precise measurement of this quantity and represents a factor of 2.2 improvement over our previous result based on the 2018 dataset. In combination, the two datasets yield 𝑎&sub(𝜇)(FNAL)=116592055(24) × 10&sup(−11) (0.20 ppm). Combining this with the measurements from Brookhaven National Laboratory for both positive and negative muons, the new world average is 𝑎&sub(𝜇)(exp)=116592059(22) × 10&sup(−11) (0.19 ppm).
ОИЯИ = ОИЯИ (JINR)2024
Спец.(статьи,препринты) = С 346.3а - Основные свойства мю-мезонов: масса, типы и времена распадов
Бюллетени = 41/024
Aguillard, D.P.
Detailed Report on the Measurement of the Positive Muon Anomalous Magnetic Moment to 0.20 ppm / D.P.Aguillard, V.A.Baranov, V.N.Duginov, N.V.Khomutov, V.A.Krylov, N.A.Kuchinskiy, V.P.Volnykh, [a.o.] // Physical Review D [Electronic resource]. – 2024. – Vol. 110, No. 3. – P. 032009. – URL: https://doi.org/10.1103/PhysRevD.110.032009. – Bibliogr.: 96.
We present details on a new measurement of the muon magnetic anomaly, 𝑎&sub(𝜇)=(𝑔&sub(𝜇)−2)/2. The result is based on positive muon data taken at Fermilab’s Muon Campus during the 2019 and 2020 accelerator runs. The measurement uses 3.1 GeV/𝑐 polarized muons stored in a 7.1-m-radius storage ring with a 1.45 T uniform magnetic field. The value of 𝑎𝜇 is determined from the measured difference between the muon spin precession frequency and its cyclotron frequency. This difference is normalized to the strength of the magnetic field, measured using nuclear magnetic resonance. The ratio is then corrected for small contributions from beam motion, beam dispersion, and transient magnetic fields. We measure 𝑎&sub(𝜇)=116592057(25) × 10&sup(−11) (0.21 ppm). This is the world’s most precise measurement of this quantity and represents a factor of 2.2 improvement over our previous result based on the 2018 dataset. In combination, the two datasets yield 𝑎&sub(𝜇)(FNAL)=116592055(24) × 10&sup(−11) (0.20 ppm). Combining this with the measurements from Brookhaven National Laboratory for both positive and negative muons, the new world average is 𝑎&sub(𝜇)(exp)=116592059(22) × 10&sup(−11) (0.19 ppm).
ОИЯИ = ОИЯИ (JINR)2024
Спец.(статьи,препринты) = С 346.3а - Основные свойства мю-мезонов: масса, типы и времена распадов
Бюллетени = 41/024