On the Lense-Thirring test with the Mars Global Surveyor in the gravitational field of Mars
arXiv:gr-qc/0701146 · doi:10.2478/s11534-009-0117-6
Abstract
I discuss some aspects of the recent test of frame-dragging performed by me by exploiting the Root-Mean-Square (RMS) orbit overlap differences of the out-of-plane component N of the orbit of the Mars Global Surveyor (MGS) spacecraft in the gravitational field of Mars. A linear fit of the full time series of the entire MGS data (4 February 1999-14 January 2005) yields a normalized slope 1.03 +/- 0.41 (with 95% confidence bounds). Other linear fits to different data sets confirm the agreement with general relativity. The huge systematic effects induced by the mismodeling in the martian gravitational field claimed by some authors are absent in the MGS out-of-plane record. The non-gravitational forces affect at the same level of the gravitomagnetic one the in-plane orbital components of MGS, not the out-of-plane one. Moreover, they experience high-frequency variations which does not matter in the present case in which secular effects are relevant.
LaTex2e, 8 pages, no figures, no tables, 17 references. It refers to K. Krogh, Class. Quantum Grav., 24, 5709-5715, 2007 based on astro-ph/0701653. Final version to appear in CEJP (Central European Journal of Physics)
References in corpus (4)
- Evidence of the gravitomagnetic field of Mars
- Iorio's "high-precision measurement" of frame-dragging with the Mars Global Surveyor
- On the Systematic Errors in the Detection of the Lense-Thirring Effect with a Mars Orbiter
- The meaning of systematic errors, a comment to "Reply to On the Systematic Errors in the Detection of the Lense-Thirring Effect with a Mars Orbiter", by Lorenzo Iorio
Cited by in corpus (8)
- Juno, the angular momentum of Jupiter and the Lense-Thirring effect
- Sagnac Effect, Ring Lasers and Terrestrial Tests of Gravity
- Test of gravitomagnetism with satellites around the Earth
- Mars and frame-dragging: study for a dedicated mission
- Dynamical Model of Rotation and Orbital Coupling for Deimos
- Gravitomagnetism and the Earth-Mercury range
- Gravitomagnetic Field of Rotating Rings
- Deconstructing Frame Dragging