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AdS/CFT correspondence and Quasiparticle

Shortcuts: Differences, Similarities, Jaccard Similarity Coefficient, References.

Difference between AdS/CFT correspondence and Quasiparticle

AdS/CFT correspondence vs. Quasiparticle

In theoretical physics, the anti-de Sitter/conformal field theory correspondence, sometimes called Maldacena duality or gauge/gravity duality, is a conjectured relationship between two kinds of physical theories. In physics, quasiparticles and collective excitations (which are closely related) are emergent phenomena that occur when a microscopically complicated system such as a solid behaves as if it contained different weakly interacting particles in free space.

Similarities between AdS/CFT correspondence and Quasiparticle

AdS/CFT correspondence and Quasiparticle have 16 things in common (in Unionpedia): Atomic nucleus, Condensed matter physics, Electric charge, Elementary particle, Entropy, Fermion, Neutron, Particle, Particle physics, Proton, Quantum field theory, Quantum mechanics, Schrödinger equation, Spin (physics), Superconductivity, Superfluidity.

Atomic nucleus

The atomic nucleus is the small, dense region consisting of protons and neutrons at the center of an atom, discovered in 1911 by Ernest Rutherford based on the 1909 Geiger–Marsden gold foil experiment.

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Condensed matter physics

Condensed matter physics is the field of physics that deals with the macroscopic and microscopic physical properties of matter.

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Electric charge

Electric charge is the physical property of matter that causes it to experience a force when placed in an electromagnetic field.

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Elementary particle

In particle physics, an elementary particle or fundamental particle is a particle with no substructure, thus not composed of other particles.

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Entropy

In statistical mechanics, entropy is an extensive property of a thermodynamic system.

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Fermion

In particle physics, a fermion is a particle that follows Fermi–Dirac statistics.

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Neutron

| magnetic_moment.

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Particle

In the physical sciences, a particle (or corpuscule in older texts) is a small localized object to which can be ascribed several physical or chemical properties such as volume, density or mass.

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Particle physics

Particle physics (also high energy physics) is the branch of physics that studies the nature of the particles that constitute matter and radiation.

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Proton

| magnetic_moment.

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Quantum field theory

In theoretical physics, quantum field theory (QFT) is the theoretical framework for constructing quantum mechanical models of subatomic particles in particle physics and quasiparticles in condensed matter physics.

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Quantum mechanics

Quantum mechanics (QM; also known as quantum physics, quantum theory, the wave mechanical model, or matrix mechanics), including quantum field theory, is a fundamental theory in physics which describes nature at the smallest scales of energy levels of atoms and subatomic particles.

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Schrödinger equation

In quantum mechanics, the Schrödinger equation is a mathematical equation that describes the changes over time of a physical system in which quantum effects, such as wave–particle duality, are significant.

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Spin (physics)

In quantum mechanics and particle physics, spin is an intrinsic form of angular momentum carried by elementary particles, composite particles (hadrons), and atomic nuclei.

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Superconductivity

Superconductivity is a phenomenon of exactly zero electrical resistance and expulsion of magnetic flux fields occurring in certain materials, called superconductors, when cooled below a characteristic critical temperature.

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Superfluidity

Superfluidity is the characteristic property of a fluid with zero viscosity which therefore flows without loss of kinetic energy.

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The list above answers the following questions

AdS/CFT correspondence and Quasiparticle Comparison

AdS/CFT correspondence has 170 relations, while Quasiparticle has 98. As they have in common 16, the Jaccard index is 5.97% = 16 / (170 + 98).

References

This article shows the relationship between AdS/CFT correspondence and Quasiparticle. To access each article from which the information was extracted, please visit:

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