GRAVITATIONAL DRIVING: GEODESICS WARPED BY SOLITONS OF ACCELERATION

Nilo Serpa

Resumo


Abstract. This article discusses the basic science to be considered as the background for a speculative technology of gravitational propulsion. Generalized functions are applied to the formalism of general relativity to introduce finite dynamic intervals of spacetime to be warped by acceleration solitons, the latter being interpreted as causing geodesic bends in the spacetime continuum.

Key words: soliton, propultion, gravitational tail, warp-drive spacetime, spacetime interval.

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Dieser Artikel beschreibt die Grundlagenforschung, die als Hintergrund einer spekulativen Technologie des Gravitationsantriebs betrachtet werden soll. Verallgemeinerte Funktionen werden auf den Formalismus der allgemeinen Relativitätstheorie angewendet, um die richtigen Abstände als dynamische Raumzeitintervalle zu definieren. Einsame Beschleunigungswellen werden so interpretiert, dass sie die geodätischen Abweichungen im Raumzeitkontinuum verursachen.

Schlüsselwörter: Soliton, Antrieb, Gravitationsschwanz, Warp-Drive-Raumzeit, Raumzeitintervall.


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Referências


Pascal, B. (1656/2006). Do espírito geométrico e outros textos — Pensamentos. São Paulo: Escala, 109p.

Goethe, J. (1632-1677). Estudo segundo Spinoza. In: Jacira Cardoso (Org.), "Ensaios científicos: uma metodologia para o estudo da natureza", São Paulo: Barany, 116p.

Füzfa, A. (2015) "How current loops and solenoids curve space-time" arXiv:1504.00333v3.

Alcubierre, M. (1994) "The warp drive: hyper-fast travel within general relativity" Classical and Quantum Gravity 11(5), 73-77.

Bobrick, A., Martire, G. (2021) "Introducing physical warp drives" arXiv: 2102.06824v2.

Lentz, E. (2021) "Breaking the warp barrier: Hyper-fast solitons in Einstein-Maxwell-plasma theory" arXiv:2006.07125v2.

Thorne, K. (2014). The science of interestellar. New York: W.W. Norton & Company, 324p.

Krauss, L. (1997). A física de Jornada nas Estrelas. São Paulo: Makron Books, 151p.

Bondi, H. (1967/1997). Conjetura e mito na física. Brasília: Editora Universidade de Brasília, 57p.

Serpa, N., Steiner, J. (2016) "General relativity, quantum gravity and all that: Time machines in perspective by singularity functions" Bulg. J. Phys. 43(1) 1-20.




DOI: http://dx.doi.org/10.17648/calibre.v6i1.1550

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CALIBRE - Revista Brasiliense de Engenharia e Física Aplicada

ISSN Eletrônico: 2526-4192

 

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