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Deuterium Nucleus Confirms Proton Radius Puzzle
Deuterium Nucleus Confirms Proton Radius Puzzle

SPACE-TIME , GAUGE-GRAVITY AND STRING
SPACE-TIME , GAUGE-GRAVITY AND STRING

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Key ideas that led to QED vacuum consists of "sea of electrons

... Many symbolic manipulations have to conducted on the integrant such as: • normal ordering due to the infinitely many charges in the Dirac sea; • mass renormalization due to the ultraviolet/infrared divergence of the photon field; • charge renormalization, again due to the infinitely many charges in ...
Quantum systems in one-dimension and quantum transport
Quantum systems in one-dimension and quantum transport

... Quantum systems confined to low dimensions, such as spin chains, carbon nanotubes or cold atoms in optical lattices, often behave in a universal way that is efficiently described in terms of simple effective theories. These introductory lectures will review the bosonization approach for one-dimensio ...
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... paper on a dynamical theory of the electromagnetic field. This was the first example of a theory that was able to encompass previous separate field theories (namely electricity and magnetism) to provide a unifying theory of electromagnetism. It explained many electric and magnetic phenomena that had ...
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... enough for the model to work. Numerous proposed alternatives solve this particular problem, although they introduce puzzles of their own. One idea, motivated by a phenomenon that occurs in superconductors, is that the Higgs particle arises as a bound state. This would solve the problem of getting it ...
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Matter and antimatter: very similar, but not exactly - Physik

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Classical solutions of open string field theory

< 1 ... 90 91 92 93 94 95 96 97 98 ... 120 >

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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