EventsSymmetry 2021 - The 3rd International Conference on Symmetry
Published
with-doi10.3390/Symmetry2021-10769 (registering DOI)
This submission belongs to the session S1. Physics and Symmetry of the event Symmetry 2021 - The 3rd International Conference on Symmetry
Published date
07 Aug, 2021
Academic Editor
author-avatarEduardo Guendelman
Citation
Vesselin Gueorguiev, Andre Maeder, Geometric Justification of the Fundamental Interaction Fields for the Classical Long-Range Forces, in Proceedings of Symmetry 2021 - The 3rd International Conference on Symmetry, 8 August–13 August 2021, MDPI: Basel, Switzerland, doi: 10.3390/Symmetry2021-10769
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Geometric Justification of the Fundamental Interaction Fields for the Classical Long-Range Forces

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1. Ronin Institute for Independent Scholarship, Montclair, NJ, USA, USA
2. Institute for Advanced Physical Studies, Sofia, Bulgaria
3. Geneva Observatory, University of Geneva, Geneva, Switzerland
Abstract

Based on the principle of reparametrization invariance, the general structure of physically relevant classical matter systems is illuminated within the Lagrangian framework. In a straightforward way, the matter Lagrangian contains background interaction fields, such as a 1-form field analogous to the electromagnetic vector potential and symmetric tensor for gravity. The geometric justification of the interaction field Lagrangians for the electromagnetic and gravitational interactions are emphasized. The generalization to E-dimensional extended objects (p-branes) embedded in a bulk space M is also discussed within the light of some familiar examples. The concept of fictitious accelerations due to un-proper time parametrization is introduced, and its implications are discussed. The framework naturally suggests new classical interaction fields beyond electromagnetism and gravity. The simplest model with such fields is analyzed and its relevance to dark matter and dark energy phenomena on large/cosmological scales is inferred. Unusual pathological behavior in the Newtonian limit is suggested to be a precursor of quantum effects and of inflation-like processes at microscopic scales.

Keywords
diffeomorphism invariant systems
reparametrization-invariant matter systems
matter lagrangian
homogeneous singular lagrangians
relativistic particle
string theory
extended objects
p-branes
interaction fields
classical forces beyond electromagne
Manuscript
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