J 2014

The perihelion of Mercury advance and the light bending calculated in (enhanced) Newton?s theory

ABRAMOWICZ, Marek, Jiří HORÁK, Maciek WIELGUS and G. F. R. ELLIS

Basic information

Original name

The perihelion of Mercury advance and the light bending calculated in (enhanced) Newton?s theory

Authors

ABRAMOWICZ, Marek, Jiří HORÁK, Maciek WIELGUS and G. F. R. ELLIS

Edition

General Relativity and Gravitation, US - Spojené státy americké, 2014, 0001-7701

Other information

Language

English

Type of outcome

Článek v odborném periodiku

Field of Study

10308 Astronomy

Confidentiality degree

není předmětem státního či obchodního tajemství

References:

Organization unit

Faculty of Philosophy and Science in Opava

UT WoS

000333634900017

Keywords in English

space curvature; Newton's gravity; perihelion advance

Tags

International impact, Reviewed

Links

EE2.3.20.0071, research and development project.
Změněno: 15/4/2021 10:52, Mgr. Pavlína Jalůvková

Abstract

V originále

We show that results of a simple dynamical gedanken experiment interpreted according to standard Newton's gravitational theory, may reveal that three-dimensional space is curved. The experiment may be used to reconstruct the curved geometry of space, i.e. its non-Euclidean metric {}^3g_{ik}. The perihelion of Mercury advance and the light bending calculated from the Poisson equation {}^3g_{ik} nabla_i nabla_k Phi = -4pi G rho and the equation of motion F^i = ma^i in the curved geometry {}^3g_{ik} have the correct (observed) values. Independently, we also show that Newtonian gravity theory may be enhanced to incorporate the curvature of three dimensional space by adding an extra equation which links the Ricci scalar {}^3R with the density of matter rho.Like in Einstein's general relativity, matter is the source of curvature. In the spherically symmetric (vacuum) case, the metric of space {}^3g_{ik} that follows from this extra equation agrees, to the expected accuracy, with the metric