Illuminating the proton radius conundrum: the μHe+ Lamb shiftThis paper was presented at the International Conference on Precision Physics of Simple Atomic Systems, held at École de Physique, les Houches, France, 30 May – 4 June, 2010.

Author:

Antognini A.12345,Biraben F.12345,Cardoso J. M.R.12345,Covita D. S.12345,Dax A.12345,Fernandes L. M.P.12345,Gouvea A. L.12345,Graf T.12345,Hänsch T. W.12345,Hildebrandt M.12345,Indelicato P.12345,Julien L.12345,Kirch K.12345,Kottmann F.12345,Liu Y.-W.12345,Monteiro C. M.B.12345,Mulhauser F.12345,Nebel T.12345,Nez F.12345,dos Santos J. M.F.12345,Schuhmann K.12345,Taqqu D.12345,Veloso J. F.C.A.12345,Voss A.12345,Pohl R.12345

Affiliation:

1. Institut für Teilchenphysik, ETH Zürich, 8093 Zürich, Switzerland.

2. Laboratoire Kastler Brossel, CNRS and Université P. et M. Curie, 75252 Paris, France.

3. Departamento de Física, Universidade de Coimbra, 3004-516 Coimbra, Portugal.

4. Departamento de Física, Universidade de Aveiro, 3810-193 Aveiro, Portugal.

5. Department of Physics, University of Tokyo, Tokyo 113-0033, Japan.

Abstract

We plan to measure several 2S–2P transition frequencies in μ4He+ and μ3He+ by means of laser spectroscopy with an accuracy of 50 ppm. This will lead to a determination of the corresponding nuclear rms charge radii with a relative accuracy of 3 × 10−4, limited by the uncertainty of the nuclear polarization contribution. First, these measurements will help to solve the proton radius puzzle. Second, these very precise nuclear radii are benchmarks for ab initio few-nucleon theories and potentials. Finally when combined with an ongoing measurement of the 1S–2S transition in He+, these measurements will lead to an enhanced bound-state QED test of the 1S Lamb shift in He+.

Publisher

Canadian Science Publishing

Subject

General Physics and Astronomy

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