Absolute Relativity and Prediction on GP-B Data, its Quantization and Solar Application
Jin He · arXiv (Cornell University) · 2006
Abstract Newton‘s law of universal gravitation states that every single point mass attracts every other point mass by an isotropic force pointing along the line combining the two. The force is proportional to the product of the two masses and inversely proportional to the square of the distance between the point masses. However, Newton law and its associated general relativity (GR) do not provide complete explanation of nature. First public peek at Gravity Probe B results (GP-B) shows that both geodetic and frame-dragging effects are larger than GR predictions by the gap of about 25 mas/yr. Standard theory of galaxies and the universe is doomed of dark matter and dark energy. I suggest that Einstein relativity is not complete. Mass and motion are the basic components of nature and I propose the principle of universal gravitation due to motion. Any realistic motion of a mass generates an anisotropic force which is proportional to the product of the mass and its squared relative velocity (relative to light speed c). Similar to Newton law, the force is proportional to the other mass on which the force is exerted and inversely proportional to the square of the distance between the two masses. This suggests the possibility of anti-gravity which, however, is hard to achieve. For example, a photon has the relative velocity of 1 but zero mass. It is shown that the above GP-B gap can be covered by the new gravity. The meaning of Absolute Relativity consists of two points of view. One is the including of my motional gravity into classical theory. The other is its basis on the existence of the absolute and unique inertial frame of the universe. I also present the quantization of flat-spacetime covariant gravity, and solar application.