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As if photons interacted with other photons?Now you added something to Johns idea The only definition I've seen there is the idea of two 'photon interactions'"From quantum electrodynamics it can be found that photons cannot couple directly to each other, since they carry no charge, but they can interact through higher-order processes. A photon can, within the bounds of the uncertainty principle, fluctuate into a charged fermion–antifermion pair, to either of which the other photon can couple. This fermion pair can be leptons or quarks. Thus, two-photon physics experiments can be used as ways to study the photon structure, or what is "inside" the photon."that's more or less about a regime where we had a 'hot' constricted universe. It's what I would call a 'container model'
Let me see if I get you straight? You define gravity to a varying of the speed of light, as defined from a 'container model' in where we all will agree to different 'time densities' due to this variation? Or would you separate time from gravity, how? And then we come to uniform motion, how do you define the 'densities' there?
As if photons interacted with other photons? Now you added something to Johns idea The only definition I've seen there is the idea of two 'photon interactions'"From quantum electrodynamics it can be found that photons cannot couple directly to each other, since they carry no charge, but they can interact through higher-order processes. A photon can, within the bounds of the uncertainty principle, fluctuate into a charged fermion–antifermion pair, to either of which the other photon can couple. This fermion pair can be leptons or quarks. Thus, two-photon physics experiments can be used as ways to study the photon structure, or what is "inside" the photon."that's more or less about a regime where we had a 'hot' constricted universe. It's what I would call a 'container model'
When speaking of Radiation pressure photons gently push matter even though it’s said photons have no mass, like for solar sails and in optical tweezers and the Casimir effect. If this matter was leptons or quarks, would it be wrong to say that photons may interact with each other, with some extra energy from the quantum vacuum? Maybe that is what happens if they hit each other on a sweet spot? It’s an elastic or inelastic impulse (“+vacuum energy”) which set particles out of path. Is it possible that the probably energetic dense field where this is happening somehow has the characteristics of setting all particles trying to get out from the black hole pushed back?
Just two humble questions: Since light is bent by gravity, do we need to redefine the definition of mass?
What may not fluctuate into something else within the boundaries of the uncertainty principal if Big bang was such a fluctuation?