Skip to content
Register Sign in Wishlist

Modern Elementary Particle Physics
Explaining and Extending the Standard Model

2nd Edition

$59.99 (X)

textbook Award Winner
  • Date Published: March 2017
  • availability: In stock
  • format: Hardback
  • isbn: 9781107165083

$ 59.99 (X)
Hardback

Add to cart Add to wishlist

Other available formats:
eBook


Request examination copy

Instructors may request a copy of this title for examination

Description
Product filter button
Description
Contents
Resources
Courses
About the Authors
  • This book is written for students and scientists wanting to learn about the Standard Model of particle physics. Only an introductory course knowledge about quantum theory is needed. The text provides a pedagogical description of the theory, and incorporates the recent Higgs boson and top quark discoveries. With its clear and engaging style, this new edition retains its essential simplicity. Long and detailed calculations are replaced by simple approximate ones. It includes introductions to accelerators, colliders, and detectors, and several main experimental tests of the Standard Model are explained. Descriptions of some well-motivated extensions of the Standard Model prepare the reader for new developments. It emphasizes the concepts of gauge theories and Higgs physics, electroweak unification and symmetry breaking, and how force strengths vary with energy, providing a solid foundation for those working in the field, and for those who simply want to learn about the Standard Model.

    • Presents the Standard Method in a deductive rather than a historical approach, allowing people with some physics training but with little interest in working in particle physics to understand this new success of modern science
    • The qualitatively and conceptually solid derivations presented in this book are sufficient to understand the power of the theory, while avoiding the off-putting complexity
    • Explains calculations that demonstrate how well the theory is tested, as well as the Higgs boson discovery and its implications
    Read more

    Awards

    • Winner, 2017 Choice Outstanding Academic Title

    Reviews & endorsements

    'This updated version of the classic textbook serves as a concise and approachable introduction to the foundations of modern particle physics. After covering the basics of the Standard Model and the recently discovered Higgs boson, Kane continues introducing key topics in beyond the Standard Model physics, including Dark Matter and Supersymmetry. Kane is world renowned for his research as a particle physicist, and here he has written a modern and up-to-date introduction to the subject that will be valued by both the first-time student and the experienced researcher.' Scott Watson, Syracuse University, New York

    'Kane's enthusiasm for particle physics and the standard model that encompasses current understanding of the field shines throughout. His book follows a conceptual rather than historical trajectory, beginning with particles and units and continuing with symmetry and gauge theories into consideration of accelerators and evaluations of experimental results. The final chapters examine what physicists may find (if anything) beyond the standard model, including topics such as grand unification, dark matter, and supersymmetry. Several appendixes provide a deeper dive into the mathematical aspects of the theory (group theory and relativistic mechanics, to mention two). A sufficient amount of mathematics is included to move the book beyond a popular account of the standard model without putting it beyond reach of first-year graduate students. The work’s length (just over 200 pages) will make it attractive to interested specialists from other fields and to professors teaching introductory courses in particle physics.' CHOICE

    'The second edition of Modern Elementary Particle Physics is a comprehensive overview of the Standard Model and the main experimental results that led to that theory and confirmed its predictions. … What may be most distinguishable about this textbook is the discussion of what is beyond the Standard Model physics in Chapters 23–26. Among many topics, it covers unifications of quarks and leptons, unification of forces, proton decay, neutrino masses, dark matter, and supersymmetry. … In summary, Modern Elementary Particle Physics is an approachable textbook for advanced undergraduates and good supplemental material for a particle-physics course.' Jarek Nowak, The Observatory

    See more reviews

    Customer reviews

    Not yet reviewed

    Be the first to review

    Review was not posted due to profanity

    ×

    , create a review

    (If you're not , sign out)

    Please enter the right captcha value
    Please enter a star rating.
    Your review must be a minimum of 12 words.

    How do you rate this item?

    ×

    Product details

    • Edition: 2nd Edition
    • Date Published: March 2017
    • format: Hardback
    • isbn: 9781107165083
    • length: 240 pages
    • dimensions: 252 x 193 x 14 mm
    • weight: 0.69kg
    • contains: 50 b/w illus.
    • availability: In stock
  • Table of Contents

    1. Introduction
    2. Relativistic notation, Lagrangians, and interactions
    3. Gauge invariance
    4. Non-abelian gauge theories
    5. Dirac notation for spin
    6. The Standard Model Lagrangian
    7. The electroweak theory and quantum chromodynamics
    8. Masses and the Higgs mechanism
    9. Cross sections, decay widths, and lifetimes: W and Z decays
    10. Production and properties of W± and Zᴼ
    11. Measurement of electroweak and QCD parameters: the muon lifetime
    12. Accelerators - present and future
    13. Experiments and detectors
    14. Low energy and non-accelerator experiments
    15. Observation of the Higgs boson at the CERN LHC: is it the Higgs boson?
    16. Colliders and tests of the Standard Model: particles are pointlike
    17. Quarks and gluons, confinement and jets
    18. Hadrons, heavy quarks, and strong isospin invariance
    19. Coupling strengths depend on momentum transfer and on virtual particles
    20. Quark (and lepton) mixing angles
    21. CP violation
    22. Overview of physics beyond the Standard Model
    23. Grand unification
    24. Neutrino masses
    25. Dark matter
    26. Supersymmetry.

  • Resources for

    Modern Elementary Particle Physics

    Gordon Kane

    General Resources

    Find resources associated with this title

    Type Name Unlocked * Format Size

    Showing of

    Back to top

    This title is supported by one or more locked resources. Access to locked resources is granted exclusively by Cambridge University Press to instructors whose faculty status has been verified. To gain access to locked resources, instructors should sign in to or register for a Cambridge user account.

    Please use locked resources responsibly and exercise your professional discretion when choosing how you share these materials with your students. Other instructors may wish to use locked resources for assessment purposes and their usefulness is undermined when the source files (for example, solution manuals or test banks) are shared online or via social networks.

    Supplementary resources are subject to copyright. Instructors are permitted to view, print or download these resources for use in their teaching, but may not change them or use them for commercial gain.

    If you are having problems accessing these resources please contact lecturers@cambridge.org.

  • Author

    Gordon Kane, University of Michigan, Ann Arbor
    Gordon Kane is Victor Weisskopf Distinguished University Professor at the University of Michigan, Ann Arbor. From 2005 until 2012, he directed the Michigan Center for Theoretical Physics (MCTP), a leading center for the advancement of theoretical physics. In 2012, he received the Lilienfeld Prize from the American Physical Society. Kane is an internationally recognized scientific leader in theoretical and phenomenological particle physics, Higgs physics, supersymmetry, cosmology, dark matter, and theories for physics beyond the Standard Model. In recent years, he has been a leader in string phenomenology. He is a fellow of the American Physical Society, the American Association for the Advancement of Science, and the British Institute of Physics.

    Awards

    • Winner, 2017 Choice Outstanding Academic Title

Sign In

Please sign in to access your account

Cancel

Not already registered? Create an account now. ×

Sorry, this resource is locked

Please register or sign in to request access. If you are having problems accessing these resources please email lecturers@cambridge.org

Register Sign in
Please note that this file is password protected. You will be asked to input your password on the next screen.

» Proceed

You are now leaving the Cambridge University Press website. Your eBook purchase and download will be completed by our partner www.ebooks.com. Please see the permission section of the www.ebooks.com catalogue page for details of the print & copy limits on our eBooks.

Continue ×

Continue ×

Continue ×

Find content that relates to you

Join us online

This site uses cookies to improve your experience. Read more Close

Are you sure you want to delete your account?

This cannot be undone.

Cancel

Thank you for your feedback which will help us improve our service.

If you requested a response, we will make sure to get back to you shortly.

×
Please fill in the required fields in your feedback submission.
×