Can corrections to gravity at galactic distances be decisive to the problem of dark matter and dark energy?

Fuente: arXiv
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Auteurs principaux: Kamalov, T. F., Volkova, O. A., Khamis, Hassan M. H., Evdokimov, N. V., Kamalov, Yu. T.
Format: Preprint
Publié: 2021
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author Kamalov, T. F.
Volkova, O. A.
Khamis, Hassan M. H.
Evdokimov, N. V.
Kamalov, Yu. T.
author_facet Kamalov, T. F.
Volkova, O. A.
Khamis, Hassan M. H.
Evdokimov, N. V.
Kamalov, Yu. T.
contents Are Dark Matter the result of uncalculated addition derivatives? The need to introduce dark matter dark becomes unnecessary if we consider that, the phenomenon of dark matter is a result of not computing the additional derivatives of the equation of motion. For this purpose, we use higher derivatives in the form of non-local variables, known as the Ostrogradsky formalism. As a mathematician, Ostrogradsky considered the dependence of the Lagrange function on acceleration and its higher derivatives with respect to time. This is the case that fully correspond with the real frame of reference, and that can be both inertial and non-inertial frames. The problem of dark matter and dark energy presented starting from basic observations to explain the different results in theory and experiment. The study of galactic motion, especially the rotation curves, showed that a large amount of dark matter can be found mainly in galactic halos. The search for dark matter and dark energy has not confirmed with the experimental discovery of it, so we use Ostrogradsky formalities to explain the effects described above, so that the need to introduce dark matter and dark energy disappears. We hope that this description can lead to a Steady State Model (SSM) of the Universe.
format Preprint
id arxiv_https___arxiv_org_abs_2108_07158
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Can corrections to gravity at galactic distances be decisive to the problem of dark matter and dark energy?
Kamalov, T. F.
Volkova, O. A.
Khamis, Hassan M. H.
Evdokimov, N. V.
Kamalov, Yu. T.
General Physics
83C56
Are Dark Matter the result of uncalculated addition derivatives? The need to introduce dark matter dark becomes unnecessary if we consider that, the phenomenon of dark matter is a result of not computing the additional derivatives of the equation of motion. For this purpose, we use higher derivatives in the form of non-local variables, known as the Ostrogradsky formalism. As a mathematician, Ostrogradsky considered the dependence of the Lagrange function on acceleration and its higher derivatives with respect to time. This is the case that fully correspond with the real frame of reference, and that can be both inertial and non-inertial frames. The problem of dark matter and dark energy presented starting from basic observations to explain the different results in theory and experiment. The study of galactic motion, especially the rotation curves, showed that a large amount of dark matter can be found mainly in galactic halos. The search for dark matter and dark energy has not confirmed with the experimental discovery of it, so we use Ostrogradsky formalities to explain the effects described above, so that the need to introduce dark matter and dark energy disappears. We hope that this description can lead to a Steady State Model (SSM) of the Universe.
title Can corrections to gravity at galactic distances be decisive to the problem of dark matter and dark energy?
topic General Physics
83C56
url https://arxiv.org/abs/2108.07158