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Muonium-antimuonium oscillations in an extended minimal supersymmetric standard model / Boyang Liu.

Springer Nature - Springer Physics and Astronomy eBooks 2011 English International Available online

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Format:
Book
Thesis/Dissertation
Author/Creator:
Liu, Boyang.
Series:
Springer theses.
Springer theses, 2190-5053
Language:
English
Subjects (All):
Nuclear chemistry.
Muonium.
Muons.
Physical Description:
1 online resource (71 p.)
Edition:
1st ed. 2011.
Place of Publication:
New York : Springer, 2011.
Language Note:
English
Summary:
The muonium-antimuonium oscillation process has been studied for decades both experimentally and theoretically. Of particular interest is that such a muonium-antimuonium oscillation is totally forbidden within the Standard Model because the process violates the individual electron and muon number conservation laws by two units. Hence, its observation will be a clear signal of physics beyond the Standard Model. This thesis involves the computation of the muonium-antimuonium oscillation time scale in a variety of Standard Model extensions. First, the gauge independence of the various 1-loop contributions to this process is demonstrated in the Standard Model modified only with the inclusion of right-handed neutrinos which were used to generate light neutrino masses via the see-saw mechanism. Next the muonium-antimuonium oscillation time scale in a supersymmetric (SUSY) extension of the Standard Model is calculated. The lower bound on the ratio of the two Higgs field VEVs is also discussed by using experimental results. This Doctoral Thesis has been accepted by Purdue University, West Lafayette, USA.
Contents:
Introduction to muonium-antimuonium oscillation
Muonium-antimuonium oscillation in a modified Standard Model
Supersymmetry and the Minimal Supersymmetric Standard Model
The muonium-antimuonium oscillation in the extended Minimal Supersymmetric Standard Model
The constraints from the muon and electron anomalous magnetic moment experiments
Conclusions.
Notes:
Description based upon print version of record.
Doctoral Thesis (Ph. D.)--Purdue University.
Includes bibliographical references.
ISBN:
1-283-08838-X
9786613088383
1-4419-8330-9
OCLC:
823129210

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