6 citations · 9 across the 4 of their papers we have counts for
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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…
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…
QED derived from the two-body interaction (1) Mapping to M-space
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.(1) Here,…
Classical behaviour of the Dirac bispinor
Sarah B. M. Bell, John P. Cullerne, Bernard M. Diaz
It is usually supposed that the Dirac and radiation equations predict that the phase of a fermion will rotate through half the angle through which the fermion is rotated, which mea…