Authors: Arthur E Pletcher
By extending the classic concept of parallax as a system to triangulate distant stars, I propose that a displacement in spacetime can be used to triangulate distant galaxies. Such an empirical experiment would also validate, or invalidate, conventional relative Doppler effect theory. The practical procedure would involve measuring SNe1 supernovae data analysis from two separate spacetime reference frames, using two essentially) simultaneous observations, from different inertial reference frames. Both rfs observe the same two supernovae events (a) and (b), such that (b) is twice the distance (x) from the Earth than (a). I named this experiment ”Spacetime Parallax”, because the triangulation of distance x is from a displacement in spacetime and the resulting time dilation is compared. This same format is then used for a quadratic accelerating reference frame, mimicking (g) force on the Earth’s surface. If the difference in wavelengths (∆λ), as measured between the two rfs, is not in proportion to the distance between the two events (x b = 2x a ), it is then justified to assume some error is evident in conventional methods. Correcting for such skewed Doppler shift observations has implications for all parameters of cosmology. This might include: dark energy, accelerated expansion, average density, the cosmic event horizon, as well as rotational velocities in general.
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[v1] 2016-05-15 09:00:12
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