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首页> 外文期刊>International Journal of Astrophysics and Space Science >Quantum vacuum energy, gravity manipulation and the force generated by the interaction between high-potential electric fields and zero-point-field
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Quantum vacuum energy, gravity manipulation and the force generated by the interaction between high-potential electric fields and zero-point-field

机译:量子真空能,重力操纵以及高电势电场和零点场之间相互作用产生的力

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The idea of manipulating and using the energy associated to electrodynamic quantum vacuum, also known as Zero Point Energy (ZPE), for technological applications as, for example, interstellar space propulsion, represents one of the most challenging question both in theoretical and applied physics. During the past years B.Haish, A.Rueda and H.E.Puthoff proposed a model according to which inertia could be considered as the electromagnetic reaction force to interaction between a body and quantum vacuum zero point field (ZPF), opening interesting perspectives about manipulating inertia by electromagnetic fields. Nevertheless this theory, although interesting from both a theoretical and applicative point of view, is for from being complete and presents some questionable points. More recent results have suggested a novel model of quantum vacuum, ruled by "Planck metric" and characterized by an energy density field, able to give a novel interpretation of mass and gravity in terms of variation of such energy density. In this paper we'll propose an extension of this model allowing the theoretical possibility of inertia and gravity strength manipulation, as well as a more fundamental theoretical explanation of some assumptions of the Haish, Rueda and Puthoff model. In particular, it will be shown that not only inertia but gravitational "constant" as well can be expressed as functions of quantum vacuum energy density, analyzing their relationships with the electromagnetic field, described by vector potential. Finally we will discuss the possibility of space propulsion system by considering the interaction between the zero-point field of the quantum vacuum and the high potential electric field generated in an asymmetrical capacitor, showing the resulting force is driven by quantum vacuum energy density.
机译:对于诸如星际空间推进之类的技术应用,操纵和使用与电动量子真空相关的能量(也称为零点能量(ZPE))的想法代表了理论和应用物理学中最具挑战性的问题之一。在过去的几年中,B.Haish,A.Rueda和HEPuthoff提出了一个模型,根据该模型可以将惯性视为对物体与量子真空零点场(ZPF)之间相互作用的电磁反作用力,从而为操纵惯性开辟了有趣的视角通过电磁场。但是,尽管从理论和应用的观点来看都很有趣,但该理论是完整的,并提出了一些可疑的观点。最近的结果提出了一种新的量子真空模型,该模型受“普朗克度量”(Planck metric)支配,并具有能量密度场,能够根据这种能量密度的变化给出质量和引力的新颖解释。在本文中,我们将对该模型进行扩展,以允许进行惯性和重力强度操纵的理论可能性,以及对Haish,Rueda和Puthoff模型的某些假设的更基本的理论解释。特别地,将显示出不仅惯性而且重力“常数”也可以表示为量子真空能密度的函数,分析它们与矢量势所描述的电磁场的关系。最后,我们将通过考虑量子真空的零点场与非对称电容器中产生的高电势电场之间的相互作用来讨论空间推进系统的可能性,这表明合力是由量子真空能密度驱动的。

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