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Frustrated Quantum Magnetism with Laser-Dressed Rydberg Atoms
Frustrated Quantum Magnetism with Laser-Dressed Rydberg Atoms

Laura Covi Institute for Theoretical Physics Georg-August
Laura Covi Institute for Theoretical Physics Georg-August

URL - StealthSkater
URL - StealthSkater

Lecture 3
Lecture 3

Two-particle Proton Correlationsat BES Energies
Two-particle Proton Correlationsat BES Energies

whites1
whites1

Chapter 4: Crystal Lattice Dynamics
Chapter 4: Crystal Lattice Dynamics

... over k may then be confined to this region. This region is defined as the smallest polyhedron centered at the origin of the reciprocal lattice and enclosed by perpendicular bisectors of the G’s is called the Brillouin zone (cf. Fig. 9). Typically, we choose to include only half of the bounding surfa ...
PPT - Fernando Brandao
PPT - Fernando Brandao

WHAT IS THE CAUSE OF INERTIA?
WHAT IS THE CAUSE OF INERTIA?

Quark matter influence on observational - Instituut
Quark matter influence on observational - Instituut

... This thesis concludes of one and a half year of research on observational properties of quark stars, based on quantum field theoretical calculations of quark matter. I have done my research at the ‘Anton Pannekoek Institute for Astronomy’ of the University of Amsterdam and at the department of Theor ...
Frustrated Magnetism in Vanadium Oxides
Frustrated Magnetism in Vanadium Oxides

... short range spin correlations in the paramagnetic metallic state of LiV2 O4 . This approach was developed in Ref. [9] within random phase approximation (RPA) spin fluctuation theory based on ab initio LDA electronic structure. 3.1. Electronic structure and spin susceptibility The pyrochlore lattice ...
Entanglement Spectrum MIT 2016
Entanglement Spectrum MIT 2016

parity-violating electron scattering
parity-violating electron scattering

... Since the weak neutral charge of electrons and light quarks are different for left- and right-handed particles, the parity symmetry is violated in the scattering of polarized electrons off unpolarized targets. In this section, we introduce the formalism for a quantitative discussion of parity violat ...
PowerPoint - Subir Sachdev
PowerPoint - Subir Sachdev

Compact dimensions
Compact dimensions

... • No deviations from SM at LEP-2  lightest RS graviton is heavier than 210 GeV • Tevatron Drell-Yan data show no deviations either  lightest RS graviton is heavier than ~ 850 GeV • LC: smaller  but clean final states: • graviton resonances in Bhabha scattering and e+e-  +- ...
A family of spin-S chain representations of SU(2) k Wess
A family of spin-S chain representations of SU(2) k Wess

... sites and a is the lattice constant, the Haldane–Shastry model (HSM) exactly obeys the WZW1 scalings for any finite L. (This is related to its enlarged Yangian quantum group symmetry [15].) Moreover, the exact HSM ground state wave function corresponds to the Laughlin wave function [16] in terms of ...
On-site correlations in optical lattices: Band mixing
On-site correlations in optical lattices: Band mixing

Relativity and Quantum Field Theory
Relativity and Quantum Field Theory

... representation can then be built. One can then show that this method of constructing a Fock space representation is unique up to unitary equivalence. This is made rigorous by a result due to Kay (1979). Let (S, σ, Dt) be a classical phase space, where S is the space of (well-behaved) solutions to a ...
Recent progresses on diagrammatic determinant QMC
Recent progresses on diagrammatic determinant QMC

Lecture 1
Lecture 1

... Quarks carry spin . Two quarks (or actually a quark and an antiquark) bind together to make a meson (such as pion or kaon). Three quarks bind together to make a barion (such as proton or neutron). Assume all quarks are in the ground state so the orbital angular momentum is zero). (1) What spins are ...
ppt - damtp
ppt - damtp

... All pseudo-moduli get non-tachyonic masses at one-loop. SUSY broken: Vacua (meta) stable (we'll discuss tunneling soon). Vacua mysterious in electric description: not semi-classical, very quantum mechanical. ...
QUANTUM FIELD THEORY a cyclist tour
QUANTUM FIELD THEORY a cyclist tour

... discovery of Brownian motion showed that matter was not continuous but was made up of atoms. In quantum physics we have no experimental indication of having reached the distance scales in which any new space-time structure is being sensed: hence for us this stepping probability has no direct physica ...
Kondo Screening Cloud Around a Quantum Dot
Kondo Screening Cloud Around a Quantum Dot

Jet hadronization and E-by-E issues in energy loss
Jet hadronization and E-by-E issues in energy loss

Quantum Magnetism
Quantum Magnetism

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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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