Quantum Gravity and String Theory

   

The Photon Mass Problem

Authors: Sylwester Kornowski

It is obvious that physical vibrations/rotations/translations cannot be separated from a physical volume i.e. from at least an inertial mass or from the Principle-of-Equivalence (PoE) matter. It should concern the photons and gluons as well. On the other hand, it is argued that a mass of photon causes that its speed is lower than the speed of light in “vacuum” c and depends on its frequency, causes that the Coulomb law is modified, that gauge invariance and charge conservation are not valid, and so on. Here, applying the Scale-Symmetric Theory (SST), we show that the listed above arguments against a massive photon are unfounded. The PoE mass of the present-day photons calculated within SST is about 27 orders of magnitude lower than the rest mass of electron and is invariant (the c is the natural speed of the massive photons in spacetime and is invariant as well) so this result is below the upper limit for photon mass that results from experimental data. We show also that relativistic mass is a real physical quantity, not an artefact/unreal-thing. SST shows that the inner momentum associated with spin and the spin itself, not the rest mass, are the invariants for all frames of reference assuming the special relativity case of flat spacetime (SST shows that contrary to the gravitational fields associated with the non-gravitating Higgs field, the Einstein spacetime associated with the PoE matter is indeed flat and dominates over the Higgs field). It leads to conclusion that the energy-momentum relation is still valid but it fails when we consider the structural changes in the bare fermions dependent on their speed.

Comments: 5 Pages.

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Submission history

[v1] 2016-12-11 17:00:07
[v2] 2016-12-18 09:13:19

Unique-IP document downloads: 38 times

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