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Emergent Properties of Discretized Wave
Emergent Properties of Discretized Wave

... At this point, this paper becomes speculative. I do not know what happens in these models on the scale of fundamental particles, because it is not possible to do simulations at that scale. Thus, I describe what may happen based on properties of the models and existing physics. Such speculation may b ...
PPT - LSU Physics & Astronomy
PPT - LSU Physics & Astronomy

... HIGH FLUX 2-PHOTON NOON STATES From a High-Gain OPA (Theory) We present a theoretical analysis of the properties of an unseeded optical parametric amplifier (OPA) used as the source of entangled photons. OPA Scheme ...
The Transactional Interpretation of Quantum Mechanics http://www
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Quantum-electrodynamical approach to the Casimir force
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... an expression derived directly from Maxwell’s stress tensor instead of differentiating the energy relation. Unfortunately this method does not remove the divergencies brought about by summation over modes so that here again convergence generation procedures are required. This approach has been initi ...
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... strains of the entire supercell are included. Each local vector is converted to a string of P beads, so that we have 9 PL 3 degrees of freedom per simulation supercell. We use a single-flip algorithm, making trial moves of the vectors at each site in turn and testing acceptance after each move. We s ...
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... Initially physicists struggled a lot with the idea of “actio in distans”, a force working from a distance through ‘nothing’. But they fundamentally embedded this idea in the concept of a “field”. Since then the concept of field never left physics again and fields are ever since at the center of ever ...
Dokument - Atomic Precision
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... In 1970 Howard Johnson published the booklet “The secret world of magnets” which is available again now [1]. This contains some of his pioneering work on magnets and unusual applications of them. By measuring the magnetic fields of permanent magnets, he discovered certain vortex structures not seen ...
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... We shall see that (T4.9) can also be used to derive the Ehrenfests theorem. This therem is concerned with the connection between classical and quantum mechanics, or with the so-called classical limit of the latter, if you like. We know that classical mechanics works perfectly for macroscopic objects ...
Revisiting a Limit on Efficient Quantum Computation Tarsem S. Purewal Jr.  ABSTRACT
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... the quantum models offer an advantage over classical models, and therefore more practical quantum algorithms that outperform classical algorithms are likely to exist. Although it has not been proven that quantum computers are more powerful than their classical counterparts in any practical sense, th ...
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Mathcad - MerminBohmEPRBell

... prior to measurement requires that the probability the detectors will register opposite spin values is 0.67 (48/72). If the detectors are set to the same direction, they always register different spin values (24/24), and if they are set to different directions the probability they will register diff ...
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... attempt to unify gravity with the other fundamental forces, have suggested that every fundamental particle should have a shadow particle. It is more than 20 years that we are looking ...
talk by Oscar Versolato
talk by Oscar Versolato

... • Mediated by Z0 bosons, mass ≈ 91 GeV, so short-range • Violation of selection rules (E1PNC transitions) • Strength scales ~ Z3 • Nucleus has also a weak charge Qw ...
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... corresponds to the N and η = ∞ to the D BCs. The para- for N BC and ∼ t for D BC. For alternative analytic meter η has the physical interpretation of a phase shift on approaches using Moshinsky functions see ref. [2]. reflection with the wall. Therefore, the following natural When addressing the case ...
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MAPPING BETWEEN NONLINEAR SCHRÖDINGER EQUATIONS WITH REAL AND COMPLEX POTENTIALS MARIO SALERNO
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... applicative point of view. The non hermiticity is in general due to the presence of a complex potential in the Hamiltonian accounting for typical dissipative and amplification effects met in classical and quantum contexts [5, 12]. In particular, dissipative solitons [4] of the nonlinear Schrödinger ...
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AJR Ch7 Quantum Theory and Electronic Structure of Atoms.docx
AJR Ch7 Quantum Theory and Electronic Structure of Atoms.docx

Effect of Landau quantization on the equations of state in dense
Effect of Landau quantization on the equations of state in dense

... realistic possibilities that multi-GG B-fields can be generated with existing PW-class laser systems. The B-fields were measured with oblique incidence p-polarized laser irradiation. Particle-in-cell modeling suggests that the azimuthal B-field lies outside the main interaction region in the colder ...
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Aharonov–Bohm Effect and Magnetic Monopoles
Aharonov–Bohm Effect and Magnetic Monopoles

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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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