English

Measuring general relativistic dragging effects in the Earth's gravitational field with ELXIS: a proposal

General Relativity and Quantum Cosmology 2019-01-11 v5 Earth and Planetary Astrophysics Space Physics

Abstract

In a geocentric kinematically rotating ecliptical coordinate system in geodesic motion through the deformed spacetime of the Sun, both the longitude of the ascending node Ω\Omega and the inclination II of an artificial satellite of the spinning Earth are affected by the post-Newtonian gravitoelectric De Sitter and gravitomagnetic Lense-Thirring effects. By choosing a circular orbit with I=Ω=90degI = \Omega = 90\deg for a potential new spacecraft, which we propose to name ELXIS, it would be possible to measure each of the gravitomagnetic precessions separately at a percent level, or, perhaps, even better depending on the level of accuracy of the current and future global ocean tide models since the competing classical long-term perturbations on I, ΩI,~\Omega due to the even and odd zonal harmonics J, =2, 3, 4,J_\ell,~\ell=2,~3,~4,\ldots of the geopotential vanish. Moreover, a suitable linear combination of I, ΩI,~\Omega would be able to cancel out the solid and ocean tidal perturbations induced by the K1K_1 tide and, at the same time, enforce the geodetic precessions yielding a secular trend of 8.3 milliarcseconds per year-8.3~\textrm{milliarcseconds~per~year}, thus strengthening the goal of a 105\simeq 10^{-5} test of the De Sitter effect recently proposed in the literature in the case of an equatorial coordinate system. Relatively mild departures ΔI=ΔΩ0.010.1deg\Delta I = \Delta\Omega\simeq 0.01-0.1\deg from the ideal orbital configuration with I=Ω=90degI = \Omega = 90\deg are allowed. [Abridged]

Keywords

Cite

@article{arxiv.1809.06119,
  title  = {Measuring general relativistic dragging effects in the Earth's gravitational field with ELXIS: a proposal},
  author = {Lorenzo Iorio},
  journal= {arXiv preprint arXiv:1809.06119},
  year   = {2019}
}

Comments

LaTex2e, 40 pages, 2 tables, 11 figures. Two figures and one table added. Typo corrected (0 deg -> 90 deg) at pag. 3 of this draft and pag. 2 of the published version. Definition of the Sun's ecliptic longitude added in Appendix A