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Phys. Rep. - The Budapest Quantum Optics Group
Phys. Rep. - The Budapest Quantum Optics Group

9. QUANTUM CHROMODYNAMICS 9. Quantum chromodynamics 1
9. QUANTUM CHROMODYNAMICS 9. Quantum chromodynamics 1

Indium Phosphide Quantum Dots in GaP and in
Indium Phosphide Quantum Dots in GaP and in

tgd as a generalized number theory
tgd as a generalized number theory

... 3.3.5 Mapping of infinite primes to space-time surfaces . . . . . . . . . . . . . . . . . 189 3.4 How to interpret the infinite hierarchy of infinite primes? . . . . . . . . . . . . . . . . 190 3.4.1 Infinite primes and hierarchy of super-symmetric arithmetic quantum field theories190 3.4.2 Prime Hi ...
Dirac Notation in Mathematica
Dirac Notation in Mathematica

from its mathematical description to its experimental
from its mathematical description to its experimental

Particle Detectors in Curved Space Quantum Field Theory
Particle Detectors in Curved Space Quantum Field Theory

... the irreducible representation of the Poincare Group (Schweber 1961, Davies 1984). These symmetries and representations lead to the Fock representation in a natural way. However, in any arbitrary space, such a high degree of symmetry may not always exist, resulting in there being no particular repre ...
SCIENTIFIC ACHIEVEMENTS OF VLADIMIR GRIBOV LN Lipatov
SCIENTIFIC ACHIEVEMENTS OF VLADIMIR GRIBOV LN Lipatov

Quantum conditional probability - E
Quantum conditional probability - E

Relativistic Quantum Information: developments in Quantum
Relativistic Quantum Information: developments in Quantum

slides  - Frontiers of Fundamental Physics (FFP14)
slides - Frontiers of Fundamental Physics (FFP14)

`Nonclassical` states in quantum optics: a `squeezed` review of the
`Nonclassical` states in quantum optics: a `squeezed` review of the

Quantum Information Processing with
Quantum Information Processing with

as a PDF
as a PDF

The Second Law of Quantum Complexity
The Second Law of Quantum Complexity

∗ ∗
∗ ∗

Dirac and Majorana edge states in graphene and topological
Dirac and Majorana edge states in graphene and topological

Topological phases and polaron physics in ultra cold quantum gases
Topological phases and polaron physics in ultra cold quantum gases

Entanglement in periodically driven quantum systems
Entanglement in periodically driven quantum systems

quantum computing
quantum computing

String Theory. Volume 1, Introduction to the Bosonic String
String Theory. Volume 1, Introduction to the Bosonic String

... From the beginning it was clear that, despite its successes, the Standard Model of elementary particles would have to be embedded in a broader theory that would incorporate gravitation as well as the strong and electroweak interactions. There is at present only one plausible candidate for such a the ...
Physik-Department Technische Universität München
Physik-Department Technische Universität München

... Another important step in the development of my Ph.D. work is certainly represented by the encounter with Prof. Dr. Frank K. Wilhelm. Before moving to the Institute for Quantum Computing (IQC), Waterloo, Canada, Frank Wilhelm was leading a small group of very bright students at the Ludwig-Maximilian ...
Introduction to String Theory
Introduction to String Theory

Introduction to Lattice Field Theory
Introduction to Lattice Field Theory

Nonlocality in multipartite correlation networks  LARS ERIK WÜRFLINGER
Nonlocality in multipartite correlation networks LARS ERIK WÜRFLINGER

... ICFO-The Institute of Photonic Sciences ...
1 2 3 4 5 ... 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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