arXiv · hep-ex/9907013
Measurement of the 1s-2s energy interval in muonium
Abstract
The 1s-2s interval has been measured in the muonium ({$μ^+e^-$}) atom by Doppler-free two-photon laser spectroscopy. The frequency separation of the states was determined to be 2 455 528 941.0(9.8) MHz in good agreement with quantum electrodynamics. The muon-electron mass ratio can be extracted and is found to be 206.768 38(17). The result may be interpreted as measurement of the muon-electron charge ratio as $-1- 1.1(2.1)\cdot 10^{-9}$.
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V. Meyer, S. N. Bagayev, P. E. G. Baird, P. Bakule, M. G. Boshier, A. Breitrueck, S. L. Cornish, S. Dychkov, G. H. Eaton, A. Grossmann, D. Huebl, V. W. Hughes, K. Jungmann, I. C. Lane, Y. W. Liu, D. Lucas, Y. Matyugin, J. Merkel, G. zu Putlitz, I. Reinhard, P. G. H. Sandars, R. Santra, P. Schmidt, C. A. Scott, W. T. Toner, M. Towrie, K. Traeger, L. Willmann, V. Yakhontov. 1999-07-12. Measurement of the 1s-2s energy interval in muonium. https://doi.org/10.1103/physrevlett.84.1136
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