Stochastic electrodynamics is a classical theory which assumes that the physical vacuum consists of classical stochastic fields with average energy 1/2ℏω in each mode, i.e., the zero-point Planck spectrum. While this classical theory explains many quantum phenomena related to harmonic oscillator problems, hard results on nonlinear systems are still lacking. In this work the hydrogen ground state is studied by numerically solving the Abraham-Lorentz equation in the dipole approximation. First the stochastic Gaussian field is represented by a sum over Gaussian frequency components, next the dynamics is solved numerically using OpenCL. The approach improves on work by Cole and Zou 2003 by treating the full 3d problem and reaching longer simula...
We review a suite of stochastic vector computational approaches for studying the electronic structur...
AbstractUsing the probabilistic path integral representation of the time dependent solution to the S...
We computed the ground state energy of the hydrogen atom within the semi-empirical method prescribed...
In a recent paper the authors studied numerically the hydrogen ground state in stochastic electrodyn...
The behavior of a classical charged point particle under the influence of only a Coulombic binding p...
In this paper, the harmonic oscillator problem in Stochastic Electrodynamics is revisited. Using the...
Stochastic Electrodynamics (SED) has had success modeling black body radiation, the harmonic oscilla...
SIGLEAvailable from British Library Lending Division - LD:3630.84(DIAS-STP--84-51) / BLDSC - British...
De la Peña 1980 and Puthoff 1987 show that circular orbits in the hydrogen problem of Stochastic Ele...
An exact stochastic simulation of the Schroedinger equation for charged Bosons and Fermions was used...
During the last decades there has been a relatively extensive attempt to develop the theory of stoch...
In the stochastic limit the resonances play a fundamental role because they determine the generalize...
Firstly, the Markovian stochastic Schroedinger equations are presented, together with their connecti...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
Ground-state properties in a model quantum field theory are calculated by stochastic evaluation of a...
We review a suite of stochastic vector computational approaches for studying the electronic structur...
AbstractUsing the probabilistic path integral representation of the time dependent solution to the S...
We computed the ground state energy of the hydrogen atom within the semi-empirical method prescribed...
In a recent paper the authors studied numerically the hydrogen ground state in stochastic electrodyn...
The behavior of a classical charged point particle under the influence of only a Coulombic binding p...
In this paper, the harmonic oscillator problem in Stochastic Electrodynamics is revisited. Using the...
Stochastic Electrodynamics (SED) has had success modeling black body radiation, the harmonic oscilla...
SIGLEAvailable from British Library Lending Division - LD:3630.84(DIAS-STP--84-51) / BLDSC - British...
De la Peña 1980 and Puthoff 1987 show that circular orbits in the hydrogen problem of Stochastic Ele...
An exact stochastic simulation of the Schroedinger equation for charged Bosons and Fermions was used...
During the last decades there has been a relatively extensive attempt to develop the theory of stoch...
In the stochastic limit the resonances play a fundamental role because they determine the generalize...
Firstly, the Markovian stochastic Schroedinger equations are presented, together with their connecti...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
Ground-state properties in a model quantum field theory are calculated by stochastic evaluation of a...
We review a suite of stochastic vector computational approaches for studying the electronic structur...
AbstractUsing the probabilistic path integral representation of the time dependent solution to the S...
We computed the ground state energy of the hydrogen atom within the semi-empirical method prescribed...