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Considerations on the Unification of Quantum Physics with the General Theory of Relativity

机译:关于广义相对论统一量子物理学的思考

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From a holistic perspective of a physical space of any given size1, it is invariably necessary to consider its energy content, since no physical means exists of making a physical space completely devoid of energy. Such a space would therefore only be a fictive “geometric space”—that can be intellectually conceived and treated according to the rules of the appropriate geometry—although not existing in reality in the cosmos. Cosmic space always contains energy in one form or another, limited by the space under consideration. Therefore, each space possesses an energy density—no matter how low, which never becomes zero. Because of the mass-energy equivalence relationship , cosmic space also possesses a mass equivalent and is therefore “materialistic” in nature. If this is considered in association with Einstein’s space-time, what is obtained instead is an “energy-time”, i.e. an energy effect, which is based on Planck’s action quantum h. Under this condition, a close relationship would appear to exist between the General Theory of Relativity and Quantum Physics. Furthermore, it will be shown that the physical conditions of space are such that a natural quantisation of space and time exists, thus obviating the need for any artificial or arbitrary quantisation.
机译:从任何给定大小的物理空间的整体角度来看,始终都需要考虑其能量含量,因为不存在使物理空间完全缺乏能量的物理手段。因此,这样的空间只是虚构的“几何空间”,可以根据适当的几何规则从智力上加以构思和处理,尽管实际上并不存在于宇宙中。宇宙空间总是包含一种或另一种形式的能量,受所考虑的空间限制。因此,每个空间都具有能量密度-无论多么低,永远不会为零。由于质量-能量等价关系,宇宙空间也具有质量当量,因此本质上是“物质的”。如果将其与爱因斯坦的时空联系起来考虑,则获得的是“能量时间”,即基于普朗克作用量子h的能量效应。在这种情况下,广义相对论与量子物理学之间似乎存在着紧密的联系。此外,将表明,空间的物理条件使得存在对空间和时间的自然量化,因此消除了对任何人工或任意量化的需求。

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