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Energy dependence of the charge exchange reaction from muonic hydrogen to oxygen
Authors:A. Werthmüller  A. Adamczak  R. Jacot‐Guillarmod  F. Mulhauser  L.A. Schaller  L. Schellenberg  H. Schneuwly  Y.‐A. Thalmann  S. Tresch
Affiliation:A. Werthmüller, A. Adamczak, R. Jacot"dash"Guillarmod, F. Mulhauser, L.A. Schaller, L. Schellenberg, H. Schneuwly, Y."dash"A. Thalmann and S. Tresch
Abstract:The charge exchange reaction of negative muons from the 
$$(mu {text{p}})_{1{text{s}}} $$
atom to oxygen has been measured in gaseous mixtures of H2 + O2. The measurements were performed at three different relative oxygen concentrations ranging from 0.2% to 0.8% and total pressures 3.5–15 bar. A mean transfer rate of 
$$lambda _{{text{pO}}}^{text{t}} = 0.85(2) times 10^{11} {text{s}}^{{text{ - 1}}} $$
, describing the transfer from the ground state of thermalized 
$$mu {text{p}} $$
atoms to oxygen, was determined. In order to investigate the energy dependence of the transfer rate, Monte Carlo simulations of the 
$$(mu {text{p}})_{1{text{s}}} $$
thermalization and the muon transfer were carried out. The comparison of measured and simulated time spectra yielded an epithermal transfer rate 
$$lambda _{{text{pO}}}^{text{e}} $$
=3.9 
$$times $$
1011 s-1 in the energy interval 0.12–0.22 eV. The analysis with the model of ldquoTwo componentsrdquo shows that all measured time spectra can be reproduced with the same set of parameters.
Keywords:
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