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首页> 外文期刊>Journal of Quantum Information Science >From E = mc2 to E = mc2/22—A Short Account of the Most Famous Equation in Physics and Its Hidden Quantum Entanglement Origin
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From E = mc2 to E = mc2/22—A Short Account of the Most Famous Equation in Physics and Its Hidden Quantum Entanglement Origin

机译:从E = mc2到E = mc2 / 22-物理学中最著名的方程式及其隐藏的量子纠缠起源的简短说明

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Einstein’s energy mass formula is shown to consist of two basically quantum components E(O) = mc2/22 and E(D) = mc2(21/22). We give various arguments and derivations to expose the quantum entanglement physics residing inside a deceptively simple expression E = mc2. The true surprising aspect of the present work is however the realization that all the involved “physics” in deriving the new quantum dissection of Einstein’s famous formula of special relativity is actually a pure mathematical necessity anchored in the phenomena of volume concentration of convex manifold in high dimensional quasi Banach spaces. Only an endophysical experiment encompassing the entire universe such as COBE, WMAP, Planck and supernova analysis could have discovered dark energy and our present dissection of Einstein’s marvelous formula.
机译:爱因斯坦的能量质量公式显示包括两个基本的量子分量E(O)= mc2 / 22和E(D)= mc2(21/22)。我们给出各种论证和推导,以揭示存在于看似简单的表达式E = mc2中的量子纠缠物理学。然而,本工作真正令人惊讶的方面是认识到,在推导爱因斯坦著名的狭义相对论公式的新量子剖析过程中涉及的所有“物理学”实际上是一种纯粹的数学必要性,它固定在高凸凸流形的体积集中现象中。维拟Banach空间。只有涵盖整个宇宙的内在物理实验,例如COBE,WMAP,Planck和超新星分析,才能发现暗能量和我们目前对爱因斯坦奇妙公式的剖析。

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