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GRAVITY QUANTUM FOAM IN-FLOW
GRAVITY QUANTUM FOAM IN-FLOW

... DeWitte data also reveal the in-flow of space into matter which manifests as gravity. The experimental data suggests that the in-flow manifest turbulence, which amounts to the observation of a gravitational wave phenomena. The Einstein assumptions leading to the Special and General Theory of Relativ ...
1 Introduction. Measurable and Nonmea
1 Introduction. Measurable and Nonmea

... of the minimal possible measuring unit lmin . So, trying to frame a theory (QT and GR) correct at all the energy levels using only the measurable quantities, one should realize that then the mathematical formalism of the theory should not involve any infinitesimal spatial-temporal quantities. Beside ...
Chapter 4: Symmetries
Chapter 4: Symmetries

... Unitary Irreducible Representations. We can reproduce what we have learned about the free Klein–Gordon field from representation theory of the Poincaré algebra. We can also learn how to generalise the construction. Let us therefore investigate the unitary irreducible representations of the Poincare ...
Electron Wave Function
Electron Wave Function

... an inverse series of distances. Indeed, suppose we need to know the mean wavelength of the hydrogen-atom spectrum, for example, the Balmer series. Of course, we can calculate it, but it is an meaningless operation, because such an averaged wave does not exist in nature[5]. Problems of the Bohr Model ...
Feynman`s formulation of Quantum mechanics
Feynman`s formulation of Quantum mechanics

quantum computer - Caltech Particle Theory
quantum computer - Caltech Particle Theory

... “Nature is subtle” is a play on Einstein’s famous pronouncement: “Raffiniert ist der Herrgott aber boshaft ist er nicht” (Subtle is the Lord, but malicious He is not). For all his genius, Einstein underestimated the subtlety of nature when he derisively dismissed quantum entanglement as “Spukhaf ...
Schrödinger`s equation
Schrödinger`s equation

Inflation and the primordial perturbations Hael Collins The Niels Bohr International Academy
Inflation and the primordial perturbations Hael Collins The Niels Bohr International Academy

... however, this simple equality no longer holds. For example, it is possible for space to expand in such a way that the light of a sufficiently distant object will never reach us. As its light propagates toward us through space, space itself can be expanding so that the distance that the light must st ...
Document
Document

... growth with energy incompatible with unitarity: only valid up to »100GeV  non-renormalizable: gives good predictions, but they cannot be consistently improved ...
PowerPoint - Isaac Newton Institute
PowerPoint - Isaac Newton Institute

... “Cleaned” our understanding of entropy Rephrased limitations of DMRG Focused on entanglement Represent and manipulate states through their entanglement Opened road to efficient simulations in d>1+1 ...
SNS COLLEGE OF TECHNOLOGY, COIMBATORE – 35
SNS COLLEGE OF TECHNOLOGY, COIMBATORE – 35

... 1. With necessary explanation, derive the Maxwell’s equation in differential and integral forms. ...
Can Quantum-Mechanical Description of Physical Reality be
Can Quantum-Mechanical Description of Physical Reality be

Compute by“Cooling”Quantum System
Compute by“Cooling”Quantum System

On the wave function of relativistic electron moving in a uniform
On the wave function of relativistic electron moving in a uniform

... where C1 is a constant, bispinor up (z, x0 ) formally takes the same form as in the case of the free-electron (see Appendix A) but constant values E and p have been replaced with functions E± (z, x0 ) (53) or (63) and p± (z, x0 ) (55) or (64). In turn, function S± (z, x0 ) very formally could be cal ...
Deterministic Bell State Discrimination
Deterministic Bell State Discrimination

... [14, 15, 16]. Appropriate unitary transforms and measurements, which transfer the Bell states into disentangled basis states, can unambiguously identify all the four Bell states [15, 16, 17]. However, in the process of measurement the entangled state is vandalized. The above is ...
Some possible consequences of the HUGE magnetic fields
Some possible consequences of the HUGE magnetic fields

14.5-14.8
14.5-14.8

... Dipole moment is a vector pointing from negative to positive charge ...
Quantum field theory in curved spacetime
Quantum field theory in curved spacetime

... symmetry of fundamental interactions. In other words, quantum fields look the same to all inertial observers. However, these symmetries are far too restrictive if quantum field theory is to be understood in the sense of general relativity. The principle of general covariance asserts that the laws of ...
W. Pauli - Fisica Fundamental
W. Pauli - Fisica Fundamental

... k1 and k2, even when several equivalent electrons or completed electron groups are present. Moreover, we shall allow (also in the just-mentioned cases) in our thoughts such a strong magnetic field that we can assign to each electron, independently of the other electrons not only the quantum numbers ...
A strong hybrid couple
A strong hybrid couple

... class of light-harvesting protein and the channels that might allow electrontransporting molecules to escape this otherwise closed system. See Article p.228 ...
Physics
Physics

Electronic Structure of Strained GaSb/GaAs Quantum Dot
Electronic Structure of Strained GaSb/GaAs Quantum Dot

... At the moment, the theoretical calculations of the type-II quantum dots have not been extensively investigated and there are only few papers that we can mention here. North and co-authors [13] investigated the electronic structure of type-II GaSb/GaAs quantum dots by using the multiband effective-ma ...
An Effective Quantum Potential for Particle
An Effective Quantum Potential for Particle

A Modular Method for the Efficient Calculation of Ballistic Transport
A Modular Method for the Efficient Calculation of Ballistic Transport

... billiards”) the numerical solution of the Schrödinger equation in an effective oneelectron approximation has remained a computational challenge. This is partly due to the fact that many of the most interesting phenomena occur in parameter regimes which are difficult to handle from a computational poin ...
8 - ijssst
8 - ijssst

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History of quantum field theory

In particle physics, the history of quantum field theory starts with its creation by Paul Dirac, when he attempted to quantize the electromagnetic field in the late 1920s. Major advances in the theory were made in the 1950s, and led to the introduction of quantum electrodynamics (QED). QED was so successful and ""natural"" that efforts were made to use the same basic concepts for the other forces of nature. These efforts were successful in the application of gauge theory to the strong nuclear force and weak nuclear force, producing the modern standard model of particle physics. Efforts to describe gravity using the same techniques have, to date, failed. The study of quantum field theory is alive and flourishing, as are applications of this method to many physical problems. It remains one of the most vital areas of theoretical physics today, providing a common language to many branches of physics.
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