Preprint Review Version 1 Preserved in Portico This version is not peer-reviewed

Alena Tensor as an Example of the Dualistic Approach and Its Possible Applications in Quantum Field Theory and Unification Theories

These authors contributed equally to this work.
Version 1 : Received: 28 October 2023 / Approved: 30 October 2023 / Online: 30 October 2023 (08:36:58 CET)
Version 2 : Received: 30 November 2023 / Approved: 1 December 2023 / Online: 1 December 2023 (07:38:19 CET)
Version 3 : Received: 18 January 2024 / Approved: 19 January 2024 / Online: 19 January 2024 (13:12:30 CET)
Version 4 : Received: 26 February 2024 / Approved: 27 February 2024 / Online: 27 February 2024 (14:01:13 CET)
Version 5 : Received: 10 April 2024 / Approved: 11 April 2024 / Online: 11 April 2024 (15:25:11 CEST)

How to cite: Ogonowski, P.; Skindzier, P. Alena Tensor as an Example of the Dualistic Approach and Its Possible Applications in Quantum Field Theory and Unification Theories. Preprints 2023, 2023101872. https://doi.org/10.20944/preprints202310.1872.v1 Ogonowski, P.; Skindzier, P. Alena Tensor as an Example of the Dualistic Approach and Its Possible Applications in Quantum Field Theory and Unification Theories. Preprints 2023, 2023101872. https://doi.org/10.20944/preprints202310.1872.v1

Abstract

The Alena Tensor is a recently discovered class of stress-energy tensors that, as previous publications have shown, has extremely useful properties. In curved spacetime, this tensor reproduces Einstein Field Equations and in flat Minkowski spacetime, it describes a physical system with fields that can be widely configured. The use of the discussed tensor significantly simplifies Quantum Field Theory equations and provides canonical, generalized four-momentum with vanishing four-divergence that satisfies Klein-Gordon equation. This article discusses the possible applications of Alena Tensor in Quantum Field Theory and unification theories against the background of existing research directions. The advantages, disadvantages and potential limitations of the approach discussed are also considered.

Keywords

quantum field theory; quantum mechanics; general relativity; unification of interactions

Subject

Physical Sciences, Theoretical Physics

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