Results 121 to 130 of about 574 (155)
Some of the next articles are maybe not open access.

The spin of the electron according to stochastic electrodynamics

Foundations of Physics, 1982
By making use of the method of moments we study some aspects of the statistical behavior of the nonrelativistic harmonic oscillator according to stochastic electrodynamics. We show that the random rotations induced on the particle by the zero-point field account for the magnitude of the spin of the electron, the result differing from the correct one(3 ...
L. de la Peña, A. Jáuregui
openaire   +1 more source

Stochastic electrodynamics as a foundation for quantum mechanics

Physics Letters A, 1976
Abstract We develop a statistical description for a particle coupled to the zero-point radiation field, and apply it to the harmonic oscillator. We recover the quantum mechanical description as a limiting case of the corresponding statistical description in configuration space.
L. De la Peña-Auerbach, A.M. Cetto
openaire   +1 more source

Stochastic Electrodynamics General Considerations

1980
Stochastic Electrodynamics is a tentative to account for the peculiarities of quantum physics from a completely classical point of view. It has the advantage over many other attempts on that way to be physically well defined and to lead to equations which are not impossible to solve, so that it is possible to check the theory against experiment or ...
openaire   +1 more source

Spontaneous emission and stochastic electrodynamics

Lettere al Nuovo Cimento, 1984
Einstein's spontaneous emission is considered as the emission induced by the zero point field of stochastic electrodynamics. Using this concept the transition probability per unit time is calculated.
openaire   +1 more source

A Brief Survey of Stochastic Electrodynamics

1980
Stochastic electrodynamics and random electrodynamics are the names given to a particular version of classical electrodynamics. This purely classical theory is Lorentz’s classical electron theory(1) into which one introduces random electromagnetic radiation (classical zero-point radiation) as the boundary condition giving the homogeneous solution of ...
openaire   +1 more source

Lie algebras of classical and stochastic electrodynamics

International Journal of Theoretical Physics, 1994
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Soares Neto, J. J., Vianna, J. D. M.
openaire   +2 more sources

Stochastic Electrodynamics and the Bell Inequalities

1985
The basic ideas of stochastic electrodynamics are presented. In the light of these ideas, some general differences between quantum mechanics and local realistic theories are pointed out. The atomic-cascade experimental tests of Bell’s inequalities are analyzed and a loophole is reported in the refutation of local realism due to an incorrect ...
openaire   +1 more source

Stochastic electrodynamics. I. On the stochastic zero-point field

Foundations of Physics, 1983
This is the first in a series of papers that present a new classical statistical treatment of the system of a charged harmonic oscillator (HO) immersed in an omnipresent stochastic zero-point (ZP) electromagnetic radiation field. This paper establishes the Gaussian statistical properties of this ZP field using Bourret's postulate that all statistical ...
openaire   +1 more source

Stochastic Electrodynamics: Methods and Results

1980
Stochastic 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).
openaire   +1 more source

Quantum Theory and Linear Stochastic Electrodynamics

Foundations of Physics, 2001
We 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
openaire   +1 more source

Home - About - Disclaimer - Privacy