English

The History of the Muon (g-2) Experiments

High Energy Physics - Experiment 2018-11-19 v1 History and Philosophy of Physics Instrumentation and Detectors

Abstract

I discuss the history of the muon (g2)(g-2) measurements, beginning with the Columbia-Nevis measurement that observed parity violation in muon decay, and also measured the muon gg-factor for the first time, finding gμ=2g_\mu=2. The theoretical (Standard Model) value contains contributions from quantum electrodynamics, the strong interaction through hadronic vacuum polarization and hadronic light-by-light loops, as well as the electroweak contributions from the WW, ZZ and Higgs bosons. The subsequent experiments, first at Nevis and then with increasing precision at CERN, measured the muon anomaly aμ=(gμ2)/2a_\mu = (g_\mu-2)/2 down to a precision of 7.3 parts per million (ppm) The Brookhaven National Laboratory experiment E821 increased the precision to 0.54 ppm, and observed for the first time the electroweak contributions. Interestingly, the value of aμa_\mu measured at Brookhaven appears to be larger than the Standard Model value by greater than three standard deviations. A new experiment, Fermilab E989, aims to improve on the precision by a factor of four, to clarify whether this result is a harbinger of new physics entering through loops, or from some experimental, statistical or systematic issue.

Keywords

Cite

@article{arxiv.1811.06974,
  title  = {The History of the Muon (g-2) Experiments},
  author = {B. Lee Roberts},
  journal= {arXiv preprint arXiv:1811.06974},
  year   = {2018}
}

Comments

19 pages, 12 figures, Proceedings of the 15th International Workshop on Tau Lepton Physics