Research ArticleOpen AccessGoogle Scholar indexed
How to Achieve a Warp Drive
Independent Researcher, Puerto Rico, USA
- 1 Independent Researcher, Puerto Rico, USA
Journal of Modern Physics·Volume 14 (2023)·Pages 1771–1782·Published 13 December 2023·DOI10.4236/jmp.2023.1413106
Copy link · social · email
Abstract
In this paper, we delve into the intrinsic nature of mass and gravity, as per the amplitude modulation interpretation of the quantum theory. We explore the idea that the elementary constituent is an electromagnetic configuration that interacts with the quantum field, leading to the emergence of inertia and gravity as a reaction to the exchange with the quantum field. While these two phenomena have a common origin, they are distinct. Our proposal suggests manipulating the connection between the quantum field and the particle using high-frequency electromagnetic fields, thereby making a warp drive possible.
KeywordsPhotonInertiaGravityMaxwell’s EquationsMagnetic MonopolesFine Structure ConstantWarp Drive<i>Zitterbewegung</i>
- Miranda-Colόn, J. (2022) Journal of Modern Physics, 13, 301-314. https://doi.org/10.4236/jmp.2022.133021
- Miranda-Colόn, J. (1994) About the Nature of the Wave Function and the New Developments in Quantum Mechanics. Master’s Thesis, University of Puerto Rico, Mayagüez, PR.
- Schrödinger, E. (1930) über die Kräftefreie Bewegung in der Relativistischen Quantenmechanik. Sitzungsberichte Akad, Berlin, 418.
- Sakurai, J.J. (1967) Advanced Quantum Mechanics. Addison-Wesley, Boston.
- Haywood, R. (2023) Journal of Modern and Applied Physics, 6, No. 1.
- Zhou, D.L., Zhou, L., Wang, R.Q., Yi, S. and Sun, C.P. (2007) Physical Review A, 76, Article ID: 055801. https://doi.org/10.1103/PhysRevA.76.055801
- Brzobohaty, O., Karásek, V., Šiler, M., et al. (2013) Nature Photon, 7, 123-127. https://doi.org/10.1038/nphoton.2012.332
- Burke, D.L., Field, R.C., Horton-Smith, G., Spencer, J.E., Walz, D., Berridge, S.C., Bugg, W.M., Shmakov, K., Weidemann, A.W., Bula, C., McDonald, K.T., Prebys, E.J., Bamber, C., Boege, S.J., Koffas, T., Kotseroglou, T., Melissinos, A.C., Meyerhofer, D.D., Reis, D.A. and Ragg, W. (1997) Physical Review Letters, 79, 1626-1629. https://doi.org/10.1103/PhysRevLett.79.1626
- Mann, C., Horsley, S.A.R. and Mariani, E. (2020) Nature Photonics, 14, 669-674. https://doi.org/10.1038/s41566-020-0688-8
- Shen, J.-T. and Fan, S.H. (2007) Physical Review Letters, 98, Article ID: 153003. https://doi.org/10.1103/PhysRevLett.98.153003
- Haroche, S. (1995) Annals of the New York Academy of Sciences, 755, 73-86. https://doi.org/10.1111/j.1749-6632.1995.tb38957.x
- Griffiths, D.J. (1981) Introduction to Electrodynamics. Prentice-Hall, New Jersey.