Published September 1988 | Version v1
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Radiative muon capture in a relativistic mean field theory

  • 1. TRIUMF, Vancouver, BC (Canada)
  • 2. Indiana Univ., Bloomington, IN (United States). Dept. of Physics

Description

We examine radiative muon capture in a nuclear medium using mean field theory and a relativistic Fermi gas model for the nucleus to obtain the single nucleon states. The aim is to explore, in a simple model, effects of the medium which are characterized primarily by a nucleon effective mass m*. The relative rate, i.e. the photon spectrum divided by the nonradiative rate, and the photon asymmetry relative to the muon spin are calculated. The most important effect turns out to be the Fermi motion, which reduces the relative rate by a factor of two to three in the experimentally accessible region, compared to the static case. The m* effect further reduces the result by 10-50%, depending on the photon energy. The relativistic nature of this calculation, unlike usual nonrelativistic calculations, allows these effects to be incorporated to all orders in 1/m. As a consequence some interesting effects can be studied in the small k region. We conclude that both relativistic kinematic and medium effects may be significant and thus that it is worthwhile investigating this reaction in more realistic relativistic nuclear models. (Author) (16 refs., 8 figs.)

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MF available from INIS under the Report Number.

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Additional details

Additional titles

Subtitle (English)
Fermi gas model

Publishing Information

Imprint Pagination
20 p.
Report number
TRI-PP--88-81

Optional Information

Notes
Submitted for publication.