Journal of Quantum Information Science

Journal of Quantum Information Science

ISSN Print: 2162-5751
ISSN Online: 2162-576X
www.scirp.org/journal/jqis
E-mail: jqis@scirp.org
"Cosmic Dark Energy from ‘t Hooft’s Dimensional Regularization and Witten’s Topological Quantum Field Pure Gravity"
written by Mohamed S. El Naschie,
published by Journal of Quantum Information Science, Vol.4 No.2, 2014
has been cited by the following article(s):
  • Google Scholar
  • CrossRef
[1] A Grand Unification of the Sciences, Art & Consciousness: Rediscovering the Pythagorean Plato's Golden Mean Number System
2020
[2] On the Complementarity of Spectral and the Renormalization Dimension of Quantum Spacetime
2020
[3] A fundamentally fractal universe from Einstein, Kaluza-Klein, Witten and Vafa‟ s spacetime
2019
[4] Simulating the Quantum Universe Via the Golden mean Number Expert-Like System
2019
[5] A Fundamentally Fractal Universe from Einstein, Kaluza-Klein, Witten and Vafa's Space-Time
2019
[6] Naschie: A combined Heterotic string and Kähler manifold elucidation of ordinary energy, dark matter, Olbers's paradox and pure dark energy density of …
Journal of Modern Physics, 2017
[7] From a Dual Einstein-Kaluza Spacetime to 'tHooft Renormalon and the Reality of Accelerated Cosmic Expansion
2017
[8] A Combined Heterotic String and Kähler Manifold Elucidation of Ordinary Energy, Dark Matter, Olbers's Paradox and Pure Dark Energy Density of the Cosmos
2017
[9] 'tHooft's Renormalon: Experimental and Number Theoretical Arguments for Physical Existence
2017
[10] From Witten's 462 supercharges of 5-D Branes in eleven dimensions to the 95.5 percent cosmic dark energy density behind the accelerated expansion of the …
2016
[11] Kähler Dark Matter, Dark Energy Cosmic Density and Their Coupling
2016
[12] The Speed of the Passing of Time as Yet Another Facet of Cosmic Dark Energy
2016
[13] Completing Einstein's Spacetime
2016
[14] Cantorian-Fractal Kinetic Energy and Potential Energy as the Ordinary and Dark Energy Density of the Cosmos Respectively
2016
[15] Quantum Disentanglement as the Physics behind Dark Energy
2016
[16] From Witten's 462 Supercharges of 5-D Branes in Eleven Dimensions to the 95.5 Percent Cosmic Dark Energy Density behind the Accelerated Expansion of the …
2016
[17] Einstein's Dark Energy via Similarity Equivalence,'tHooft Dimensional Regularization and Lie Symmetry Groups
2016
[18] High Energy Physics and Cosmology as Computation
2016
[19] The Emergence of Spacetime from the Quantum in Three Steps
2016
[20] Max Planck Half Quanta as a Natural Explanation for Ordinary and Dark Energy of the Cosmos
2016
[21] On the Stringy Ghosts Which We Call the Missing Dark Energy of the Cosmos
2016
[22] Computational Fractal Logic for Quantum Physics and Cosmology
2016
[23] From Kantian-Reinen Fernunft to the Real Dark Energy Density of the Cosmos via the Measure Concentration of Convex Geometry in Quasi Banach …
2015
[24] From Kantian-Reinen Vernunft to the Real Dark Energy Density of the Cosmos via the Measure Concentration of Convex Geometry in Quasi Banach Spacetime
2015
[25] Banach Spacetime-Like Dvoretzky Volume Concentration as Cosmic Holographic Dark Energy
International Journal of High Energy Physics, 2015
[26] Dark Energy and its Cosmic Density from Einstein's Relativity and Gauge Fields Renormalization Leading to the Possibility of a New'tHooft Quasi Particle
The Open Astronomy Journal, 2015
[27] From Kantian-Reinen Fernunft to the Real Dark Energy Density of the Cosmos via the Measure Concentration of Convex Geometry in Quasi Banach Spacetime
Open Journal of Philosophy, 2015
[28] Hubble Scale Dark Energy Meets Nano Scale Casimir Energy and the Rational of Their T-Duality and Mirror Symmetry Equivalence
World Journal of Nano Science and Engineering, 2015
[29] Quantum Fractals and the Casimir-Dark Energy Duality—The Road to a Clean Quantum Energy Nano Reactor
Journal of Modern Physics, 2015
[30] A Resolution of the Black Hole Information Paradox via Transfinite Set Theory
World Journal of Condensed Matter Physics, 2015
[31] On El Naschie's Fractal-Cantorian Space-Time and Dark Energy—A Tutorial Review
Natural Science, 2015
[32] Mathematical models and methods in dark energy theory: Dvoretzky''s theorem, Casimir effect, Mobius geometry
2015
[33] Математические модели и методы в теории темной энергии: теорема Дворецкого; эффект Казимира; геометрия Мебиуса
2015
[34] Dark energy and its cosmic density from Einstein's relativity and gauge fields renormalization leading to the possibility of a new 'tHooft quasi particle
2015
[35] A Complementarity Resolution of the Black Hole Information Paradox
American Journal of Astronomy and Astrophysics, 2015
[36] From E= mc 2 to E= mc 2/22—A Short Account of the Most Famous Equation in Physics and Its Hidden Quantum Entanglement Origin
2014
[37] Casimir-Like Energy as a Double Eigenvalue of Quantumly Entangled System Leading to the Missing Dark Energy Density of the Cosmos
International Journal of High Energy Physics, 2014
[38] Compactified dimensions as produced by quantum entanglement, the four dimensionality of Einstein's smooth spacetime and 'tHooft's 4-ε fractal spacetime
American Journal of Astronomy & Astrophysics, 2014
[39] Casimir-like energy as a double Eigenvalues of quantumly entangled system leading to the missing dark energy density of the cosmos
2014
[40] The measure concentration of convex geometry in a quasi Banach spacetime behind the supposedly missing dark energy of the cosmos
American Journal of Astronomy and Astrophysics, 2014
[41] On a New Elementary Particle from the Disintegration of the Symplectic't Hooft-Veltman-Wilson Fractal Spacetime
World Journal of Nuclear Science and Technology, 2014
[42] Electromagnetic—Pure Gravity Connection via Hardy's Quantum Entanglement
Journal of Electromagnetic Analysis and Applications, 2014
[43] From Modified Newtonian Gravity to Dark Energy via Quantum Entanglement
Journal of Applied Mathematics and Physics, 2014
[44] From Chern-Simon, Holography and Scale Relativity to Dark Energy
Journal of Applied Mathematics and Physics, 2014
[45] From E= mc2 to E= mc2/22—A Short Account of the Most Famous Equation in Physics and Its Hidden Quantum Entanglement Origin
Journal of Quantum Information Science, 2014
[46] Which are the mathematics of the M-Theory?
2014
[47] Both particle and wave aspects are embedded in quantum objects. Can we suppress either aspect of a quantum particle?
2014
[48] Naschie: From E= mc2 to E= mc2/22—A Short Account of the Most Famous Equation in Physics and Its Hidden Quantum Entanglement Origin
2014
[49] From E = mc2 to E = mc2/22—A Short Account of the Most Famous Equation in Physics and Its Hidden Quantum Entanglement Origin
2014
[50] Hardy's Entanglement as the Ultimate Explanation for the Observed Cosmic Dark Energy and Accelerated Expansion
2014
Free SCIRP Newsletters
Copyright © 2006-2024 Scientific Research Publishing Inc. All Rights Reserved.
Top