The redshift and geometrical aspect of photons
Hongjun Pan

TL;DR
This paper proposes a dark matter field fluid model to explain cosmological redshift, suggesting it depends on both emitter speed and distance, and concludes photons have invariant geometry across inertial frames.
Contribution
It introduces a novel dark matter field fluid model that accounts for redshift phenomena and challenges the traditional length contraction concept for photons.
Findings
Redshift depends on emitter speed and distance, not just recession speed.
More redshifts than blueshifts are expected in the universe, aligning with observations.
Photons have invariant geometry in all inertial frames, no length contraction.
Abstract
The cosmological redshift phenomenon can be described by the dark matter field fluid model, the results deduced from this model agree very well with the observations. The observed cosmological redshift of light depends on both the speed of the emitter and the distance between the emitter and the observer. If the emitter moves away from us, a redshift is observed. If the emitter moves towards us, whether a redshift, a blueshift or no shift is observed will depend on the speed vs. the distance. If the speed is in the range of c(exp[-beta*D]-1) < v < 0, a redshift is observed; if the speed equals c(exp[-beta*D]-1), no shift is observed; if the speed v less than c(exp[-beta*D]-1), a blueshift is observed. A redshift will be always observed in all directions for any celestial objects as long as their distance from us is large enough. Therefore, many more redshifts than blueshifts should be…
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Taxonomy
TopicsExperimental and Theoretical Physics Studies · Laser Material Processing Techniques
