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Muonium-antimuonium Oscillations in an Extended Minimal Supersymmetric Standard Model

English · Paperback / Softback

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This innovative work investigated two models where the muonium-antimuonium oscillation process was mediated by massive Majorana neutrinos and sneutrinos. First, we modified the Standard Model only by the inclusion of singlet right-handed neutrinos and allowing for general renormalizable interactions producing neutrino masses and mixing. The see-saw mechanism was employed to explain the smallness of the observed neutrino masses. A lower bound on the righthanded neutrino mass was constructed using the experimental limits set by the nonobservation of the muonium-antimuonium oscillation process. Second, we modified the Minimal Supersymmetric Standard Model by the inclusion of three right-handed neutrino superfields. The experimental result of the muonium-antimuonium oscillation process generated a lower bound on the ratio of the two Higgs field VEVs. This work helps to set up relationships between the experimental result of the muonium-antimuonium oscillation process and the model parameters in two specific models. Further improvement of the experiment in the future can generate more stringent bounds on the model parameters using the procedure developed by this work.

List of 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.

About the author










Boyang Liu, Chinese Academy of Sciences, boyangleo@gmail.com


Summary

This innovative work investigated two models where the muonium-antimuonium oscillation process was mediated by massive Majorana neutrinos and sneutrinos. First, we modified the Standard Model only by the inclusion of singlet right-handed neutrinos and allowing for general renormalizable interactions producing neutrino masses and mixing. The see-saw mechanism was employed to explain the smallness of the observed neutrino masses. A lower bound on the righthanded neutrino mass was constructed using the experimental limits set by the nonobservation of the muonium-antimuonium oscillation process. Second, we modified the Minimal Supersymmetric Standard Model by the inclusion of three right-handed neutrino superfields. The experimental result of the muonium-antimuonium oscillation process generated a lower bound on the ratio of the two Higgs field VEVs. This work helps to set up relationships between the experimental result of the muonium-antimuonium oscillation process and the model parameters in two specific models. Further improvement of the experiment in the future can generate more stringent bounds on the model parameters using the procedure developed by this work.

Product details

Authors Boyang Liu
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 01.01.2014
 
EAN 9781461428053
ISBN 978-1-4614-2805-3
No. of pages 67
Dimensions 155 mm x 235 mm x 4 mm
Weight 141 g
Illustrations XI, 67 p.
Series Springer Theses
Springer Theses
Subjects Natural sciences, medicine, IT, technology > Physics, astronomy > Theoretical physics

C, Physics, String Theory, Physics and Astronomy, Quantum field theory, Elementary particles (Physics), Elementary Particles, Quantum Field Theory, Mathematical physics, Mathematical Methods in Physics, Statistical physics, Quantum Field Theories, String Theory

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