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Dark Energy Explained via the Hawking-Hartle Quantum Wave and the Topology of Cosmic Crystallography 被引量:1
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作者 Mohamed S. El Naschie Atef Helal 《International Journal of Astronomy and Astrophysics》 2013年第3期318-343,共26页
The aim of the present paper is to explain and accurately calculate the missing dark energy density of the cosmos by scaling the Planck scale and using the methodology of the relatively novel discipline of cosmic crys... The aim of the present paper is to explain and accurately calculate the missing dark energy density of the cosmos by scaling the Planck scale and using the methodology of the relatively novel discipline of cosmic crystallography and Hawking-Hartle quantum wave solution of Wheeler-DeWitt equation. Following this road we arrive at a modified version of Einstein’s energy mass relation E = mc2 which predicts a cosmological energy density in astonishing accord with the WMAP and supernova measurements and analysis. We develop non-constructively what may be termed super symmetric Penrose fractal tiling and find that the isomorphic length of this tiling is equal to the self affinity radius of a universe which resembles an 11 dimensional Hilbert cube or a fractal M-theory with a Hausdorff dimension where. It then turns out that the correct maximal quantum relativity energy-mass equation for intergalactic scales is a simple relativistic scaling, in the sense of Weyl-Nottale, of Einstein’s classical equation, namely EQR = (1/2)(1/) moc2 = 0.0450849 mc2 and that this energy is the ordinary measurable energy density of the quantum particle. This means that almost 95.5% of the energy of the cosmos is dark energy which by quantum particle-wave duality is the absolute value of the energy of the quantum wave and is proportional to the square of the curvature of the curled dimension of spacetime namely where and is Hardy’s probability of quantum entanglement. Because of the quantum wave collapse on measurement this energy cannot be measured using our current technologies. The same result is obtained by involving all the 17 Stein spaces corresponding to 17 types of the wallpaper groups as well as the 230-11=219 three dimensional crystallographic group which gives the number of the first level of massless particle-like states in Heterotic string theory. All these diverse subjects find here a unified view point leading to the same result regarding the missing dark energy of the universe, which turned out to by synonymous with t 展开更多
关键词 Doubly special relativity Week’s Manifold Experimental Test of Einstein’s relativity Witten’s M-THEORY Ordinary Energy of the QUANTUM Particle Hawking-Hartle WAVE of Cosmos Crystallographic Symmetry Groups revising special relativity
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From Modified Newtonian Gravity to Dark Energy via Quantum Entanglement 被引量:2
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作者 Mohamed S. El Naschie 《Journal of Applied Mathematics and Physics》 2014年第8期803-806,共4页
Starting from the classical Newton inverse square law of gravitation we arrive at a modified Newtonian gravity in the spirit of the work of Milgrom-Bekenstein pioneering work. This is achieved by injecting the needed ... Starting from the classical Newton inverse square law of gravitation we arrive at a modified Newtonian gravity in the spirit of the work of Milgrom-Bekenstein pioneering work. This is achieved by injecting the needed quantum mechanical dissection of special relativity into Newton’s law via the modified energy mass relationship which transforms Einstein’s famous formula?from a smooth four dimensional space to a rugged fractal-like spacetime manifold. The confidence in the present result stems not only from the consistency of the mathematical scheme but also from agreement with the general direction of cosmological measurements and observations. 展开更多
关键词 Milgrom MODIFIED NEWTONIAN GRAVITY Bekenstein GRAVITY Theory Quantum Entanglement Dark Energy revising special relativity Cantorian SPACETIME
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关于狭义相对论的修正以及新引力理论的方案 被引量:4
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作者 张操 《北京石油化工学院学报》 2006年第4期39-45,共7页
相对论存在一定的局限性。狭义相对论适用于电磁的相互作用。没有强有力的证据显示狭义相对论也适用于其它3种基本相互作用。至少在弱相互作用中,中微子可能是超光速粒子。物理学需采取多种时间的定义,一种推广伽利略变换的时间值得进... 相对论存在一定的局限性。狭义相对论适用于电磁的相互作用。没有强有力的证据显示狭义相对论也适用于其它3种基本相互作用。至少在弱相互作用中,中微子可能是超光速粒子。物理学需采取多种时间的定义,一种推广伽利略变换的时间值得进一步研究。广义相对论很大程度上是一种数学理论。作为物理学的引力理论,它存在很多基本缺陷。检验广义相对论一些天文实验,误差很大,需要重新分析。笔者将讨论一种新引力理论的方案。它的引力场方程与电磁理论的麦克斯韦方程十分相似。 展开更多
关键词 狭义相对论的修正 物理时间的定义 物理真空 超光速 新引力理论 引力场方程
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