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  • © 2018

Electroweak Baryogenesis and Its Phenomenology

Authors:

  • Nominated as an outstanding contribution by Nagoya University in 2016
  • Reviews baryon asymmetry of the Universe and electroweak baryogenesis
  • Discusses phenomena related to electroweak baryogenesis
  • Verifies electroweak baryogenesis from the point of view of Higgs physics and electric dipole moments

Part of the book series: Springer Theses (Springer Theses)

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Table of contents (7 chapters)

  1. Front Matter

    Pages i-xii
  2. Introduction

    • Kaori Fuyuto
    Pages 1-7
  3. Electroweak Baryogenesis

    • Kaori Fuyuto
    Pages 9-33
  4. Model

    • Kaori Fuyuto
    Pages 35-46
  5. Baryon Number

    • Kaori Fuyuto
    Pages 47-65
  6. Electric Dipole Moments

    • Kaori Fuyuto
    Pages 67-78
  7. Results

    • Kaori Fuyuto
    Pages 79-85
  8. Conclusion

    • Kaori Fuyuto
    Pages 87-88
  9. Back Matter

    Pages 89-95

About this book

This thesis focuses on one of the mechanisms for solving the baryon asymmetry of the Universe (BAU) which is a long-standing open question in both particle physics and cosmophysics. Electroweak baryogenesis (EWBG) is one attractive hypothetical scenario to solve this mystery because it can be verified by collider experiments. The author aims to clarify the possibility of EWBG, and to show its verifiability using the Higgs physics and electric dipole moments (EDMs) of an electron, neutron, and proton.

The thesis begins with a review of the BAU and EWBG. Subsequently, the possibility of EWBG in one effective model is discussed, which can be applied to some motivated physics beyond the Standard Model. Numerical analyses of electroweak phase transition and sphaleron solution are presented, and the closed time path formalism is also explained to estimate the BAU. After essential calculations for investigation of the possibility of EWBG, the relationship between the BAU and EDMs isdescribed. Through the discussion of the result, it is concluded that both EDMs and the Higgs physics verify the scenario completely. The whole discussion in this thesis causes us to accept the current situation that is ripe for verification of EWBG.

Authors and Affiliations

  • Amherst Center for Fundamental Interactions, Department of Physics, University of Massachusetts Amherst, Amherst, USA

    Kaori Fuyuto

About the author

Kaori Fuyuto, a postdoctoral research associate at the Amherst Center for Fundamental Interactions in the Physics Department at University of Massachusetts Amherst, is a theoretical physicist in particle physics. Her research interests include baryon asymmetry, Higgs physics, and flavor physics.

Kaori Fuyuto received her Bachelor of Arts and Science in Physics from Aichi University of Education in 2011. She then joined the group led by Professor Junji Hisano at the Department of Physics, Nagoya University, and received her Master of Science in Physics and her Ph.D. in Physics from the same university in 2013 and 2016, respectively. After finishing her PhD, she joined the cosmology group at Saga University as a postdoctoral fellow of the Japan Society for the Promotion of Science. She was awarded the “9th Particle Physics Medal: Young Scientist Award in Theoretical Particle Physics” for an article published in 2014.

Bibliographic Information

Buy it now

Buying options

eBook USD 84.99
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Hardcover Book USD 109.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access