Results 131 to 140 of about 575 (156)
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Stochastic Electrodynamics: Methods and Results
1980Stochastic Electrodynamics (SED) is a classical theory of particles and fields. The difference with respect to usual Electrodynamics is the assumption of a universal stochastic electromagnetic field (“background” field or “zero-point” field), which could be conceived as a classical counterpart to the vacuum field of Quantum Electrodynamics (QED).
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Quantum Theory and Linear Stochastic Electrodynamics
Foundations of Physics, 2001We discuss the main results of Linear Stochastic Electrodynamics, starting from a reformulation of its basic assumptions. This theory shares with Stochastic Electrodynamics the core assumption that quantization comes about from the permanent interaction between matter and the vacuum radiation field, but it departs from it when it comes to considering ...
L. de la Peña, A. M. Cetto
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The origin of the solar system and stochastic electrodynamics
Il Nuovo Cimento C, 1980The formulation of the magnetic field of rotating bodies, obtained within the framework of stochastic electrodynamics, and Hoyle's mechanism for the transfer of angular momentum are used in the proposed model of the origin of the solar system. The ensemble of numerical results obtained is in good agreement with observations.
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The Kepler Problem In Stochastic Electrodynamics
1980Stochastic electrodynamics is the Brownian motion of a charged particle in a random electromagnetic field with spectrum proportional to kω3 coth(kω/2kT). If the deterministic force field is simple harmonic, the properties of the system resemble closely those of the quantum-mechanical oscillator, but the extension to non-linear systems has proved to be ...
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The natural line-breadth in stochastic electrodynamics
International Journal of Theoretical Physics, 1974The fact that the formalism of stochastic electrodynamics includes the reaction force, makes the calculation of the natural line-breadth straightforward. The evaluation of the relativistic correction to energy levels is greatly simplified in stochastic electrodynamics and brings out the concept of the propagation of the Coulomb field with the velocity ...
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Gauge transformations in stochastic quantum electrodynamics
Il Nuovo Cimento, 1965Invariance of the S-matrix of ordinary quantum electrodynamics under gauge transformations of the electromagnetic field is demonstrated explicitly. The behavior of the S-matrix of stochastic quantum electrodynamics is examined under gauge transformations of the mean value electromagnetic fieldAπ(x;L).
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Solution of BVPs in electrodynamics by stochastic methods
2007 IEEE Applied Electromagnetics Conference (AEMC), 2007Field computation by the stochastic differential equation (SDE) method is demonstrated for electrostatic and electrodynamic propagation problems by considering simple examples. The solution to the inhomogeneous Helmholtz equation is first related to that a Schrodinger type of equation (parabolic in nature) by means of Laplace transformation.
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The free particle as described by stochastic electrodynamics
Physics Letters A, 1981Abstract Stochastic electrodynamics applied to an extended electron reproduces the basic properties of the quantum-mechanical free particle.
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Foundations of stochastic electrodynamics.
Il Nuovo Cimento B Series 11, 1974openaire +1 more source

