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The effects of large oscillating fields on spin precession in magnetic resonance
Authors:S A Dodds  T L Estle  G A Gist  Qiuan Zhu  S L Rudaz  D P Spencer  E J Ansaldo  J H Brewer  D R Noakes  R Keitel
Institution:(1) Department of Physics, Rice University, 77251 Houston, TX, USA;(2) Department of Physics, University of Saskatchewan, S7N 0W0, Saskatchewan, Canada;(3) Department of Physics, University of British Columbia, V6T 1W5 Vancouver, B.C., Canada;(4) TRIUMF, 4004 Wesbrook Mall, V6T 2A3 Vancouver, B.C., Canada;(5) Present address: Opto-Elec. Div., Hewlett-Packard, 95131 San Jose, CA, USA;(6) Present address: Pritzker School of Medicine, University of Chicago, 60637 Chicago, IL, USA
Abstract:Magnetic resonance of a spin system which is acted upon by a large near-resonance oscillating magnetic field transverse to a static field has been studied experimentally and theoretically for many years. The technique of DEMUR (Double Electron Muon Resonance) has many advantages for such studies. This paper will describe the results of an experiment to study the precession of the muonium triplet near magnetic resonance using DEMUR.
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