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The Fractional Quantum Hall Effect, Chern-Simons
The Fractional Quantum Hall Effect, Chern-Simons

beyond space and time - Penn State University
beyond space and time - Penn State University

... Vladimir Nabokov: "Space is a swarming in the eyes, and Time a singing in the ears." The entire realm of reality therefore originates from the superposition of fluctuating weaves on a submicroscopic level. We, and everything we know, are like patterns or embroideries in the fabric of the spin networ ...
A Quantum Version of Wigner`s Transition State Theory
A Quantum Version of Wigner`s Transition State Theory

... detail (see, e.g., the review paper [1]). A reaction can often be viewed as a transition across a saddle point of the potential energy surface which describes the interaction between the constituent atoms. In the 1930s Eyring, Polanyi and Wigner developed transition state theory (TST) which is a com ...
Solutions of the Equations of Motion in Classical and Quantum
Solutions of the Equations of Motion in Classical and Quantum

... In this paper we shall directly compare the time-dependent quantum operators in the Heisenberg picture with the corresponding classical functions-the solutions of the classical equations of motion. In order to make such a direct comparison possible, we introduce the expectation values of quantum ope ...
The AdS/CFT correspondence and condensed matter physics
The AdS/CFT correspondence and condensed matter physics

Gravity at the Planck Length
Gravity at the Planck Length

URL - StealthSkater
URL - StealthSkater

... From the emergence of symmetries of the Standard Model, it is a long path to demonstrating that one indeed obtains Standard Model particle multiplets. Definite differences from Standard Model are predicted. For instance, color is not spin like a quantum number but corresponds to CP 2 partial wave in ...
Gauge Theory and the Jones Polynomial
Gauge Theory and the Jones Polynomial

Electromagnetism: The simplest gauge theory.
Electromagnetism: The simplest gauge theory.

7 WZW term in quantum mechanics: single spin
7 WZW term in quantum mechanics: single spin

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F From Vibrating Strings to a Unified Theory of All Interactions
F From Vibrating Strings to a Unified Theory of All Interactions

Supersymmetry and Gauge Theory (7CMMS41)
Supersymmetry and Gauge Theory (7CMMS41)

Very brief introduction to Conformal Field Theory
Very brief introduction to Conformal Field Theory

... Non-Abelian Anyons and Topological Quantum Computation C. Nayak, S. H. Simon, A. Stern, M. Freedman, S. Das Sarma, ...
PHY313 - CEI544 The Mystery of Matter From Quarks to the
PHY313 - CEI544 The Mystery of Matter From Quarks to the

Particle Physics 1
Particle Physics 1

... This book appears every two years in two versions: the book and the booklet. Both of them list all aspects of the known particles and forces. The book also contains concise, but excellent short reviews of theories, experiments, accellerators, analysis techniques, statistics etc. There is also a vers ...
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this PDF file - e

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UNIVERSAL QUANTUM COMPUTING: ANTICIPATORY …

Symmetry Violation of Time Reversal in Third Order Vertex Angle
Symmetry Violation of Time Reversal in Third Order Vertex Angle

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Lecture 2

Time reversal and the symplectic symmetry of the electron spin.
Time reversal and the symplectic symmetry of the electron spin.

... this situation is the “large N” expansion, which extracts the collective physics of the real world by mapping it onto a solvable universe where particles carry a very large number (N) of spin components. This is a kind of synthetic quantum mechanics where 1/N plays the role of Planck’s constant and ...
On-Shell Methods in Perturbative QCD
On-Shell Methods in Perturbative QCD

Discoveries: Atoms to Quarks
Discoveries: Atoms to Quarks

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physical origin of topological mass in 2+1 dimensions* abstract

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Transition amplitudes versus transition probabilities and a

... Formulae (15.5) and (15.6) show clearly that in the classical limit, when ;,,~ 0, the two copies of space-time collapse into one, and only one trajectory, namely the one that is determined by the Newton equations, contributes to the transition probability. The same concept of a reduplicated space-ti ...
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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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