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Slides
Slides

The Structure of the Proton more than eighty years. It also has been
The Structure of the Proton more than eighty years. It also has been

BCS
BCS

Balancing Rotating Masses The balancing of rotating bodies is
Balancing Rotating Masses The balancing of rotating bodies is

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arXiv:1008.1839v2 [hep-th] 12 Aug 2010

Introduction to Spontaneous Symmetry Breaking
Introduction to Spontaneous Symmetry Breaking

... Goldstone bosons can either be elementary …elds or composite …elds a) Elementary …elds Here local operators A, B are …elds in the Lagrangian–this is the case in Standard electroweak theory b) Composite …elds In this case A, B correspond to some bound states of elementary …elds. For example in QCD th ...
File
File

QCD and heavy ions - Rencontres de Moriond
QCD and heavy ions - Rencontres de Moriond

Mass hierarchy and physics beyond the Standard Theory
Mass hierarchy and physics beyond the Standard Theory

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ppt - Infn

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Slide 1

The Higgs Boson: Reality or Mass Illusion
The Higgs Boson: Reality or Mass Illusion

... should be between 52 and 110 GeV. On the other hand, it has been determined the Higgs boson’s GeV cannot be less than 114. Another Standard Model restriction states its mass cannot exceed 1 TeV, or the electroweak theory becomes invalid. Additionally, EM waves are used to interpret mass measurements ...
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Higgs physics at the LHC and ILC

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PowerPoint file - CUE Web Summary for halldweb.jlab.org

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Physics of the Large Hadron Collider Lecture 1: Fundamentals of the

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instructions for the preparation of contributions to cern reports

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Is there a preferred canonical quantum gauge?

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A unique theory of all forces 1 The Standard Model and Unification

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Parton model from bi-local solitonic picture of the baryon in two-dimensions

< 1 ... 22 23 24 25 26 27 28 29 30 ... 56 >

Technicolor (physics)

Technicolor theories are models of physics beyond the standard model that address electroweak gauge symmetry breaking, the mechanism through which W and Z bosons acquire masses. Early technicolor theories were modelled on quantum chromodynamics (QCD), the ""color"" theory of the strong nuclear force, which inspired their name.Instead of introducing elementary Higgs bosons to explain observed phenomena, technicolor models hide electroweak symmetry and generate masses for the W and Z bosons through the dynamics of new gauge interactions. Although asymptotically free at very high energies, these interactions must become strong and confining (and hence unobservable) at lower energies that have been experimentally probed. This dynamical approach is natural and avoids issues of Quantum triviality and the hierarchy problem of the Standard Model.In order to produce quark and lepton masses, technicolor has to be ""extended"" by additional gauge interactions. Particularly when modelled on QCD, extended technicolor is challenged by experimental constraints on flavor-changing neutral current and precision electroweak measurements. It is not known what is the extended technicolor dynamics.Much technicolor research focuses on exploring strongly interacting gauge theories other than QCD, in order to evade some of these challenges. A particularly active framework is ""walking"" technicolor, which exhibits nearly conformal behavior caused by an infrared fixed point with strength just above that necessary for spontaneous chiral symmetry breaking. Whether walking can occur and lead to agreement with precision electroweak measurements is being studied through non-perturbative lattice simulations.Experiments at the Large Hadron Collider are expected to discover the mechanism responsible for electroweak symmetry breaking, and will be critical for determining whether the technicolor framework provides the correct description of nature. In 2012 these experiments declared the discovery of a Higgs-like boson with mass approximately 7002125000000000000♠125 GeV/c2; such a particle is not generically predicted by technicolor models, but can be accommodated by them.
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