Supersymmetry Beyond Minimality

£50.99

Supersymmetry Beyond Minimality

From Theory to Experiment

Condensed matter physics (liquid state and solid state physics) Atomic and molecular physics Particle and high-energy physics

Authors: Shaaban Khalil, Stefano Moretti

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Collection: Series in High Energy Physics, Cosmology and Gravitation

Language: English

Published by: CRC Press

Published on: 6th December 2017

Format: LCP-protected ePub

Size: 7 Mb

ISBN: 9781315350875


Supersymmetry (SUSY) in Particle Physics

Supersymmetry (SUSY) is one of the most important ideas ever conceived in particle physics. It is a symmetry that relates known elementary particles of a certain spin to as yet undiscovered particles that differ by half a unit of that spin (known as Superparticles). Supersymmetric models now stand as the most promising candidates for a unified theory beyond the Standard Model (SM).

The Nature and Search for SUSY

SUSY is an elegant and simple theory, but its existence lacks direct proof. Instead of dismissing supersymmetry altogether, Supersymmetry Beyond Minimality: from Theory to Experiment suggests that SUSY may exist in more complex and subtle manifestation than the minimal model.

Exploring Non-Minimal SUSY Models

The book explores in detail non-minimal SUSY models, in a bottom-up approach that interconnects experimental phenomena in the fermionic and bosonic sectors. The book considers with equal emphasis the Higgs and Superparticle sectors, and explains both collider and non-collider experiments. Uniquely, the book explores charge/parity and lepton flavour violation.

Introduction to Well-Motivated Non-Minimal SUSY Scenarios

Supersymmetry Beyond Minimality: from Theory to Experiment provides an introduction to well-motivated examples of such non-minimal SUSY models, including the ingredients for generating neutrino masses and/or relaxing the tension with the heavily constraining Large Hadron Collider (LHC) data. Examples of these scenarios are explored in depth, in particular the discussions on Next-to-Minimal Supersymmetric SM (NMSSM) and B-L Supersymmetric SM (BLSSM).

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