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Slide 1
Slide 1

Physics 557 – Lecture 8 Quantum numbers of the Standard Model
Physics 557 – Lecture 8 Quantum numbers of the Standard Model

... preserve C and P. Thus states of definite C and P will remain states of definite C and P even if they experience strong or EM interactions. The same cannot be said for the weak interactions. As we have already mentioned, the weak interactions are observed to involve couplings to only left-handed neu ...
National Science Week Event with Girlguiding Worcestershire
National Science Week Event with Girlguiding Worcestershire

... I found myself teaching this 11 year old how by smashing protons and neutrons together in particle accelerators like theLarge Hadron Collider, we more recently discovered that they are made of even smaller particles called ...
GAUGE FIELD THEORY Examples
GAUGE FIELD THEORY Examples

Two-dimensional SYM theory with fundamental mass and Chern
Two-dimensional SYM theory with fundamental mass and Chern

ppt - UCSB Physics
ppt - UCSB Physics

... Whether a quasi-1d material can ever exhibit a true 2d quantum spin liquid ground state is an open question ...
Classical tunes of Gluon Dynamics
Classical tunes of Gluon Dynamics

Quantum simulators of lattice gauge theories
Quantum simulators of lattice gauge theories

The Semiotic Flora of Elementary Particles
The Semiotic Flora of Elementary Particles

IMFUFA- Roskilde Universitetscenter- postbox 260
IMFUFA- Roskilde Universitetscenter- postbox 260

Van der Waals Interaction in QCD
Van der Waals Interaction in QCD

... Promising experiments to analyse gluonic van der Waals interaction are quarkonia-nuclei scattering [14]. Plenty of studies investigate the scattering of J/ψ at nuclei. The advantage of J/ψ over other quarkonia states is the long mean lifetime and since it is the first discovered stable state of quar ...
Phase Transitions in Early Universe
Phase Transitions in Early Universe

... big bang theory that the universe emerged from a hot and dense soup of particles in the primordial time and has been expanding ever since. While in the elementary particle physics, the four basic force in nature(electromagnetic force, weak force, strong force and gravity) has been tried to unified i ...
Open strings
Open strings

Symmetry Priniciples And Conservation Laws
Symmetry Priniciples And Conservation Laws

Weak interactions and vector bosons
Weak interactions and vector bosons

... • W-boson helped to solve some problems of Fermi's theory but produced others. • W-boson has spin 1 and non-zero mass. As a consequence at high-momentum transfer its propagator is proportional to p2 / M2 c2. The diagrams are diverging and the results of the theory are infinite. ...
Life in the Higgs condensate, where electrons have mass
Life in the Higgs condensate, where electrons have mass

... matter would be impossible without the Higgs condensate. (However, about 99% of the mass of an atom or human body results from the kinetic energy of quarks and gluons as they whiz around relativistically inside the protons and neutrons.) It is a true demonstration of the unity of physics that the Me ...
Topological Phases in Condensed Matter Systems. A Study of
Topological Phases in Condensed Matter Systems. A Study of

Principles of Computer Architecture Dr. Mike Frank
Principles of Computer Architecture Dr. Mike Frank

university college london
university college london

Two Times - University of Southern California
Two Times - University of Southern California

10 Supersymmetric gauge dynamics: N = 1 10.1 Confinement and
10 Supersymmetric gauge dynamics: N = 1 10.1 Confinement and

Thermal properties of solids
Thermal properties of solids

Pair production processes and flavor in gauge
Pair production processes and flavor in gauge



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Quantum chromodynamics

In theoretical physics, quantum chromodynamics (QCD) is the theory of strong interactions, a fundamental force describing the interactions between quarks and gluons which make up hadrons such as the proton, neutron and pion. QCD is a type of quantum field theory called a non-abelian gauge theory with symmetry group SU(3). The QCD analog of electric charge is a property called color. Gluons are the force carrier of the theory, like photons are for the electromagnetic force in quantum electrodynamics. The theory is an important part of the Standard Model of particle physics. A huge body of experimental evidence for QCD has been gathered over the years.QCD enjoys two peculiar properties:Confinement, which means that the force between quarks does not diminish as they are separated. Because of this, when you do separate a quark from other quarks, the energy in the gluon field is enough to create another quark pair; they are thus forever bound into hadrons such as the proton and the neutron or the pion and kaon. Although analytically unproven, confinement is widely believed to be true because it explains the consistent failure of free quark searches, and it is easy to demonstrate in lattice QCD.Asymptotic freedom, which means that in very high-energy reactions, quarks and gluons interact very weakly creating a quark–gluon plasma. This prediction of QCD was first discovered in the early 1970s by David Politzer and by Frank Wilczek and David Gross. For this work they were awarded the 2004 Nobel Prize in Physics.The phase transition temperature between these two properties has been measured by the ALICE experiment to be well above 160 MeV. Below this temperature, confinement is dominant, while above it, asymptotic freedom becomes dominant.
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