activity
20022005
most citedThe Classical Electron Problem

6 citations · 21 across the 12 of their papers we have counts for

collaborators

16 papers

astro-ph2005

Evidence for a Cosmological Phase Transition on the TeV Scale

James V. Lindesay, H. Pierre Noyes

Examining the reverse evolution of the universe from the present, long before reaching Planck density dynamics one expects major modifications from the de-coherent thermal equation…

physics.gen-ph20051 cited

Scientific Eschatology

H. Pierre Noyes, James Lindesay

The future evolution of the universe suggested by the cosmological model proposed earlier at this meeting by the authors is explored. The fundamental role played by the positive "c…

astro-ph2004

Cosmic Microwave Background Fluctuation Amplitude from Dark Energy De-Coherence

James V. Lindesay, H. Pierre Noyes

Standard cosmology connects the scale generated at late times by the cosmological constant with that generated in early times by the energy dynamics. Assuming dark energy de-cohere…

astro-ph2004

A Calculation of Cosmological Scale from Quantum Coherence

James V. Lindesay, H. Pierre Noyes

We use general arguments to examine the energy scales for which a quantum coherent description of gravitating quantum energy units is necessary. The cosmological dark energy densit…

physics.class-ph20046 cited

The Classical Electron Problem

T. L. Gill, W. W. Zachary, J. Lindesay

In this paper, we construct a parallel image of the conventional Maxwell theory by replacing the observer-time by the proper-time of the source. This formulation is mathematically,…

math-ph20031 cited

Group Structure of an Extended Poincare Group

James Lindesay

In previous papers we extended the Lorentz and Poincare groups to include a set of Dirac boosts that give a direct correspondence with a set of generators which for spin 1/2 system…