Open Access Open Access  Restricted Access Subscription Access

Gravity, Light, Quantum Computing and New Methods of Deep Space Exploration


Affiliations
1 Department of Academic Affairs, University of Virginia, United States
 

Physicists speak of and describe the nature of “causal spaces” in physics: This work recognizes an unrecognized “causal space” or set of “causal spaces” in the nature of space-time and gravity: send a stream of particles at the speed of light ahead of a spacecraft or space vessels travelling through space, and, given the nature and potential of quantum information and quantum computing, program instructions on the particles travelling at the speed of light to spark an explosion at a specific time interval of light-years ahead of the spacecraft; the stream of particles travelling at the speed of light ahead of the spacecraft would thus have instructions to explode or spark an explosion, such as in or near an energy or fuel source like a nebula, that would generate a gigantic mass large enough to shrink space and pull stars and planets, and even possibly galaxies, toward the gigantic mass triggered by the explosion. Thus, space shrinks, and the distance required by the spacecraft to travel across the universe to particular stars, planets, solar systems, or galaxies reduces or shrinks. This strategy of space exploration is also the opposite or an opposite of all previous models of space exploration.

Keywords

Gravitation; Light; Quantum computing; Alternative energy; Deep space exploration; Opposites .
User
Notifications
Font Size

  • Kronheimer EH, Penrose R. On the structure of causal spaces. InMathematical Proc. Camb. Philos. Soc. 1967 (Vol. 63, No. 2, pp. 481-501). Camb. Univ. Press.
  • Riemann B. On the hypotheses which lie at the bases of geometry. Birkhäuser; 2016.
  • Bombelli L, Lee J, Meyer D, et al. Space-time as a causal set. Phys. rev. lett. 1987;59(5):521.
  • Szabó L. Quantum causal structures. J. math. phys. 1986;27(11):2709-10.
  • Penrose R. A generalized inverse for matrices. InMathematical Proc. Camb. Philos. Soc.(Vol. 51, No. 3, pp. 406-413). Cambridge University Press.
  • Penrose R, Floyd RM. Extraction of rotational energy from a black hole. Nat. Phys. Sci. 1971;229(6):177-9.
  • Penrose LS, Penrose R. Impossible objects: a special type of visual illusion. Br. J. Psychol. 1958.
  • Klitgaard N, Loll R. How round is the quantum de Sitter universe?. Eur. Phys. J. C. 2020;80(10):1-2.
  • Rindler W. Visual horizons in world models. Mon. Not. R. Astron. Soc. 1956;116(6):662-77.
  • Comisso L, Asenjo FA. Magnetic reconnection as a mechanism for energy extraction from rotating black holes. Phys. Rev. D. 2021;103(2):023014.
  • Earman J. Aspects of determinism in modern physics. Philos. phys. 2007;2:1369-434.
  • Penrose R. On understanding understanding. Int. Stud. Philos. Sci. 1997;11(1):7-20.
  • Barbosa CE, Spiniello C, Arnaboldi M, et al. What does (not) drive the variation of the low-mass end of the stellar initial mass function of early-type galaxies. Astron. Astrophys., 2021;645:L1.
  • Osmanov Z. On the search for artificial Dyson-like structures around pulsars. Int. J. Astrobiol. 2016;15(2):127-32.
  • Semiz I, Oğur S. Dyson Spheres around White Dwarfs. arXiv preprint arXiv:1503.04376. 2015.
  • Kardashev NS. On the inevitability and the possible structures of supercivilizations. InSymposium-Int. Astron. Union 1985 (Vol. 112, pp. 497-504). Cambridge University Press.
  • Kardashev NS, Strelnitskij VS. Supercivilizations as possible products of the progressive evolution of matter. InBioastronomy—Next Steps 1988 (pp. 295-302). Springer, Dordrecht.

Abstract Views: 132

PDF Views: 1




  • Gravity, Light, Quantum Computing and New Methods of Deep Space Exploration

Abstract Views: 132  |  PDF Views: 1

Authors

Christopher Portosa Stevens
Department of Academic Affairs, University of Virginia, United States

Abstract


Physicists speak of and describe the nature of “causal spaces” in physics: This work recognizes an unrecognized “causal space” or set of “causal spaces” in the nature of space-time and gravity: send a stream of particles at the speed of light ahead of a spacecraft or space vessels travelling through space, and, given the nature and potential of quantum information and quantum computing, program instructions on the particles travelling at the speed of light to spark an explosion at a specific time interval of light-years ahead of the spacecraft; the stream of particles travelling at the speed of light ahead of the spacecraft would thus have instructions to explode or spark an explosion, such as in or near an energy or fuel source like a nebula, that would generate a gigantic mass large enough to shrink space and pull stars and planets, and even possibly galaxies, toward the gigantic mass triggered by the explosion. Thus, space shrinks, and the distance required by the spacecraft to travel across the universe to particular stars, planets, solar systems, or galaxies reduces or shrinks. This strategy of space exploration is also the opposite or an opposite of all previous models of space exploration.

Keywords


Gravitation; Light; Quantum computing; Alternative energy; Deep space exploration; Opposites .

References