activity
20002004
most citedQuantising general relativity using QED theory

6 citations · 9 across the 4 of their papers we have counts for

collaborators

10 papers

physics.gen-ph2004

Renormalisation and hierarchies

S. B. M. Bell, B. M. Diaz

We describe a new method of calculating the renormalised energy of a field obeying the Maxwell and Dirac equations. The method does not involve evaluating integrals but relies inst…

physics.gen-ph20041 cited

The relationship of time and space

S. B. M. Bell, B. M. Diaz

We show that, in addition to radiation travelling at the speed of light, QED theory predicts a second type of radiation with an infinite velocity. We also show that charge, as it a…

physics.gen-ph20042 cited

Quantising general relativity using QED theory, an overview and extension

Sarah B. M. Bell

We summarise and discuss some of our previous results, which show that Bohr's theory of the one-electron atom may be derived from the theory underpinning Quantum ElectroDynamics (Q…

physics.gen-ph20026 cited

Quantising general relativity using QED theory

Sarah B. M. Bell, Bernard M. Diaz

We apply QED theory to quantum gravity and find it leads to general relativity in the classical limit. We discuss the implications of the result for the quantum-classical divide. T…

quant-ph2001

The two-body interaction with a circle in time

Sarah B. M. Bell, John P. Cullerne, Bernard M. Diaz

We complete our previous(1, 2) demonstration that there is a family of new solutions to the photon and Dirac equations using spatial and temporal circles and four-vector behaviour…

quant-ph2001

QED derived from the two-body interaction (2) The derivation

Sarah B. M. Bell, John P. Cullerne, Bernard M. Diaz

We have shown in a previous paper that the Dirac bispinor can vary like a four-vector and that Quantum Electrodynamics (QED) can be reproduced with this form of behaviour.(2) We ha…