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Effect of the Gravitational Aberration on the Earth Gravity Field


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Ashby N. (2004). The Sagnac effect in the Global Positioning System. in Rizzi, G., Ruggiero, M.L.(eds) Relativity in Rotating Frames, series Fundamental Theories of Physics vol.135, pp.11-28, Kluwer.10.1007/978-94-017-0528-8_3Search in Google Scholar

Brumberg V.A. (1991). Essential Relativistic Celestial Mechanics. Taylor & Francis Group.Search in Google Scholar

Brumberg V.A., Kopeikin S.M. (1989). Relativistic reference systems and motion of test bodies in the vicinity of the Earth. Il Nuovo Cimento, 103B, pp.63-98.10.1007/BF02888894Search in Google Scholar

Fomalont E.B., Kopeikin S.M. (2003). The measurement of the light deflection from Jupiter: Experimental results. Astrophysical Journal, 598, pp.704–711.10.1086/378785Search in Google Scholar

Grøn Ø. (2009). Lecture Notes on the General Theory of Relativity. Lecture Notes in Physics. 772, Springer Science-Business Media.10.1007/978-0-387-88134-8Search in Google Scholar

Kopeikin S., Efroimsky M., Kaplan G. (2011). Relativistic Celestial Mechanics of the Solar System. Wiley VCH.10.1002/9783527634569Search in Google Scholar

Kopeikin, S.M., Fomalont, E.B. (2006). Aberration and the Fundamental Speed of Gravity in the Jovian Deflection Experiment. Foundations of Physics, 36, pp.1244–1285.10.1007/s10701-006-9059-7Search in Google Scholar

Kopeikin, S.M., Fomalont, E.B. (2007). Gravimagnetism, causality, and aberration of gravity in the gravitational light-ray deflection experiments. General Relativity and Gravitation, 39, pp.1583–1624.10.1007/s10714-007-0483-6Search in Google Scholar

Kur, T., Liwosz, T., Kalarus, M. (2020) The application of inter-satellite links connectivity schemes in various satellite navigation systems for orbit and clock corrections determination: simulation study. Acta Geod Geophys (2020). https://doi.org/10.1007/s40328-020-00322-410.1007/s40328-020-00322-4Search in Google Scholar

Landau L.D., Lifszyc J.M. (2009). Teoria Pola. PWN Warszawa.Search in Google Scholar

Landau, L.D., Lifshitz, E.M. (1975) The classical theory of fields. Oxford Pergamon Press.Search in Google Scholar

LIGO Scientific Collaboration and Virgo Collaboration: Abbott, B. P. et al., (2016). GW151226: Observation of Gravitational Waves from a 22-Solar-Mass Binary Black Hole Coalescence. Physical Review Letters. 116 (24)Search in Google Scholar

Moritz H., Hofmann-Wellenhof B. (1993). Geometry, Relativity, Geodesy. Wichmann.Search in Google Scholar

Schutz B. (2009) A First Course in General Relativity. Cambridge University Press.10.1017/CBO9780511984181Search in Google Scholar

Schutz B., Ricci F. (2001) Gravitational Waves, Sources and Detectors. In: Gravitational Waves edited by Ciufolini, Gorini, Moschella, Fre, Institute of Physics Publ., Bristol & Philadelphia.Search in Google Scholar

Smart W.M. (1960). Text-Book on Spherical Astronomy. Cambridge Univ. Press.Search in Google Scholar

Soffel M.H. (1989). Relativity in Astronomy, Celestial Mechanics and Geodesy. Springer Verlag.Search in Google Scholar

Travagnin M. (2020) Cold atom interferometry for inertial navigation sensors. Publ.Office of EU, Luxembourg.Search in Google Scholar

Zieliński J.B., Gałązka R.R., Peron R. (2007). On Possible Determination of the Speed of the Gravity Signal in Space With Help of Gradiometry. Artificial Satellites, 42, pp.120-140.10.2478/v10018-008-0005-0Search in Google Scholar

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