An alternative explanation of the orbital expansion of Titan and other bodies in the Solar system
arXiv:2201.05311 · doi:10.1134/S0202289322020086
Abstract
Recently it was found from Cassini data that the mean recession speed of Titan from Saturn is cm/yr which corresponds to a tidal quality factor of Saturn while the standard estimate yields . It was assumed that such a large speed is due to a resonance locking mechanism of five inner mid-sized moons of Saturn. In this paper, we show that an essential part of may come from a local Hubble expansion, where the Hubble-Lema\^ıtre constant recalculated to the Saturn-Titan distance is 8.15 cm/(yr ). Our hypothesis is based on many other observations showing a slight expansion of the Solar system and also of our Galaxy at a rate comparable with . We demonstrate that the large disproportion in estimating the factor can be just caused by the local expansion effect.
20 pages, 1 figure, 2 tables, to appear in the journal Gravitation and Cosmology Vol. 28, Issue 2 (2022)
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