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The Big Bang, the LHC and the Higgs boson
The Big Bang, the LHC and the Higgs boson

... The energy required to produce a separation far exceeds the pair production energy of a quark-antiquark pair, ...
A first view on the mathematical structure of the standard
A first view on the mathematical structure of the standard

What breaks electroweak symmetry
What breaks electroweak symmetry

... Fermi scale calculated in terms of the soft supersymmetry breaking parameters; generated by quantum corrections to the Higgs potential due to the large top quark mass ...
Byond Particle Physics
Byond Particle Physics

... achievement, driven by the logic of theoretical development rather than by the pressure of existing data. ...
From ancient Greece to Nobel prize: a Higgs timeline
From ancient Greece to Nobel prize: a Higgs timeline

... theory that everything in the Universe is made up of 12 building-block particles governed by four fundamental forces. The theory cannot work without the Higgs boson conferring mass on matter, 1897: The electron is discovered by Britain's as the fundamental particles by their very nature do Joseph Th ...
Lecture 1 - Particle Physics Group
Lecture 1 - Particle Physics Group

The Standard Model (SM) describes the fundamental particles of the
The Standard Model (SM) describes the fundamental particles of the

... Quarks – These are particles that are never found on their own and have fractional electric charges. Quarks come in six flavors: up, down, top, bottom, charm, and strange. Each quark has an associated anti-quark, typically indicated with a bar over the symbol. Quarks form two types of composite part ...
Physics Beyond the Standard Model
Physics Beyond the Standard Model

... with the other forces there. (Nima Arkani-Hamed, Dimopoulos and Dvali) The extra dimension could be curled up with 1 TeV excitations, or at the String or Planck Scale. The former would show up in experiment at Fermilab or the LHC as invisible missing energy disappearing into the extra dimensions in ...
Rehearsal questions
Rehearsal questions

Bosons
Bosons

Slides - Antimatter
Slides - Antimatter

... The energy required to produce a separation far exceeds the pair production energy of a quark-antiquark pair, ...
Recreating the Big Bang
Recreating the Big Bang

... The energy required to produce a separation far exceeds the pair production energy of a quark-antiquark pair, ...
New Frontiers in Particle Physics.
New Frontiers in Particle Physics.

... There are lots (more than 20) free parameters whose values are not explained. What is the origin of gauge symmetry? Why are there 3 generations? Are the particles fundamental? ...
Plasma =   a fluid of free charged particles
Plasma = a fluid of free charged particles

Dark Matter and Dark Energy - Hitoshi Murayama Home Page
Dark Matter and Dark Energy - Hitoshi Murayama Home Page

... GUT breaking by orbifolds (Kawamura; Hall, Nomura) Depends on the triplet-doublet splitting mechanism, Yukawa (non-)unification ...
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Grand Unified Theory

A Grand Unified Theory (GUT) is a model in particle physics in which at high energy, the three gauge interactions of the Standard Model which define the electromagnetic, weak, and strong interactions or forces, are merged into one single force. This unified interaction is characterized by one larger gauge symmetry and thus several force carriers, but one unified coupling constant. If Grand Unification is realized in nature, there is the possibility of a grand unification epoch in the early universe in which the fundamental forces are not yet distinct.Models that do not unify all interactions using one simple Lie group as the gauge symmetry, but do so using semisimple groups, can exhibit similar properties and are sometimes referred to as Grand Unified Theories as well.Unifying gravity with the other three interactions would provide a theory of everything (TOE), rather than a GUT. Nevertheless, GUTs are often seen as an intermediate step towards a TOE.The novel particles predicted by GUT models are expected to have energies around the GUT scale—just a few orders of magnitude below the Planck scale—and so will be well beyond the reach of any foreseen particle collider experiments. Therefore, the particles predicted by GUT models will be unable to be observed directly and instead the effects of grand unification might be detected through indirect observations such as proton decay, electric dipole moments of elementary particles, or the properties of neutrinos. Some grand unified theories predict the existence of magnetic monopoles.As of 2012, all GUT models which aim to be completely realistic are quite complicated, even compared to the Standard Model, because they need to introduce additional fields and interactions, or even additional dimensions of space. The main reason for this complexity lies in the difficulty of reproducing the observed fermion masses and mixing angles. Due to this difficulty, and due to the lack of any observed effect of grand unification so far, there is no generally accepted GUT model.
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