Abstract:
It is shown that introducing the non-zero graviton mass we can provide the solution of such standard cosmological scenario problems as singularity, horizon, flatness and concentration of relic monopoles.
Citation:
Yu. V. Chugreev, “Cosmological consequences of the relativistic theory of gravitation with massive gravitons”, TMF, 79:2 (1989), 307–313; Theoret. and Math. Phys., 79:2 (1989), 554–558
This publication is cited in the following 11 articles:
Predrag Jovanović, Vesna Borka Jovanović, Duško Borka, Alexander F. Zakharov, “Constraints on Graviton Mass from Schwarzschild Precession in the Orbits of S-Stars around the Galactic Center”, Symmetry, 16:4 (2024), 397
Yu. V. Chugreev, “Cyclic Universe in RTG: Anisotropy Problem”, Phys. Part. Nuclei Lett., 21:5 (2024), 964
Yu.V. Chugreev, “Is the Cyclic Model of the Universe Possible in the Relativistic Theory of Gravitation?”, VMU, 2024, no. №4_2024, 2440102–1
Yu. V. Chugreev, “Is the Cyclic Model of the Universe Possible in the Relativistic Theory of Gravitation?”, Moscow Univ. Phys., 79:4 (2024), 432
Zakharov A.F., Jovanovic P., Borka D., Jovanovic V.B., “Constraining the Range of Yukawa Gravity Interaction From S2 Star Orbits III: Improvement Expectations For Graviton Mass Bounds”, J. Cosmol. Astropart. Phys., 2018, no. 4, 050
Alexander F. Zakharov, Predrag Jovanović, Dusko Borka, Vesna Borka Jovanović, “Different Ways to Estimate Graviton Mass”, Int. J. Mod. Phys. Conf. Ser., 47 (2018), 1860096
Chugreev Yu.V., “Cosmological Constraints on the Graviton Mass in Rtg”, Phys. Part. Nuclei Lett., 14:4 (2017), 539–549
Yu. V. Chugreev, “Dark energy and graviton mass in the nearby universe”, Phys. Part. Nuclei Lett., 13:1 (2016), 38
Yu. V. Chugreev, “Mach's principle for cosmological solutions in relativistic theory of gravity”, Phys. Part. Nuclei Lett., 12:2 (2015), 195
Yu. M. Loskutov, “Evolution of a homogeneous isotropic universe, dark matter, and the absence of monopoles”, Theoret. and Math. Phys., 94:3 (1993), 358–366
E. Yu. Emel'yanov, Yu. V. Chugreev, “Evolution of Friedmann universe in the relativistic theory of gravitation based on spaces of constant curvature”, Theoret. and Math. Phys., 97:3 (1993), 1409–1420