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Particle Physics
Particle Physics

Quantum Information Science and Technology
Quantum Information Science and Technology

LOW ENERGY NUCLEAR FUSION REACTIONS: QUANTUM
LOW ENERGY NUCLEAR FUSION REACTIONS: QUANTUM

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Observer Effect - Continuum Center

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The Computer Science Picture of Reality

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A Beginner`s Guide to Noncommutative Geometry

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A tutorial on non-Markovian quantum processes

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Chapter 28 Quantum Mechanics of Atoms

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Quantum Teleportation

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(1) - Intellectual Archive
(1) - Intellectual Archive

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Non-Equilibrium Dynamics and Physics of the Terascale

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Field extension of real values of physical observables in classical

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Spin supercurrents and torquing with majorana fermions

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Beables for Quantum Electrodynamics

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GRW Theory - Roman Frigg

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A spectral theoretic approach to quantum

... independent, sufficiently smooth first integrals in involution. This concept is closely related to the complexity of its orbit structure, and in fact an integrable classical Hamiltonian cannot lead to chaotic dynamics. ...
pptx, 11Mb - ITEP Lattice Group
pptx, 11Mb - ITEP Lattice Group

BCS
BCS

Bethe Ansatz in AdS/CFT: from local operators to classical
Bethe Ansatz in AdS/CFT: from local operators to classical

... • ≈ 2L degenerate operators • The space of operators can be identified with the Hilbert space of a spin chain of length L with (L-M) ↑‘s and M ↓‘s ...
< 1 ... 178 179 180 181 182 183 184 185 186 ... 239 >

Quantum field theory

In theoretical physics, quantum field theory (QFT) is a theoretical framework for constructing quantum mechanical models of subatomic particles in particle physics and quasiparticles in condensed matter physics. A QFT treats particles as excited states of an underlying physical field, so these are called field quanta.In quantum field theory, quantum mechanical interactions between particles are described by interaction terms between the corresponding underlying fields.
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