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Progress in Establishing a Connection Between the Electromagnetic Zero-Point Field and Inertia

机译:建立电磁零点场与惯性之间的进展

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We report on the progress of a NASA-funded study being carried out at the Lockheed Martin Advanced Technology Center in Palo Alto and the California State University of Long Beach to investigate the proposed link between the zero-point field of the quantum vacuum and inertia. It is well known that an accelerating observer will experience a bath of radiation resulting from the quantum vacuum which mimics that of a heat bath, the so-called Davies-Unruh effect. We have further analyzed this problem of an accelerated object moving through the vacuum and have shown that the zero-point field will yield a non-zero Poynting vector to an accelerating observer. Scattering of this radiation by the quarks and electrons constituting matter would result in an acceleration-dependent reaction force that would appear to be the origin of inertia of matter (Rueda and Haisch 1998a, 1998b). In the subrelativistic case this inertia reaction force is exactly newtonian and in the relativistic case it exactly reproduces the well known relativistic extension of Newton's Law. This analysis demonstrates then that both the ordinary, F-vector = ma-vector, and the relativistic forms of Newton's equation of motion may be derived from Maxwell's equations as applied to the electromagnetic zero-point field. We expect to be able to extend this analysis in the future to more general versions of the quantum vacuum than just the electromagnetic one discussed herein.
机译:我们报告了在帕洛阿尔托洛克马丁先进科技中心和加州州长海滩大学洛克希德马丁先进科技中心进行的进展,以研究量子真空和惯性的零点场之间的建议联系。众所周知,加速观察者将经历由量子真空产生的辐射浴,其模仿热浴,所谓的Davies-Unruh效果。我们进一步分析了通过真空移动的加速物体的这种问题,并且已经示出了零点场将产生非零·普孔向量到加速观察者。夸克和电子构成物质的这种辐射的散射将导致加速依赖的反作用力,这似乎是物质惯性的起源(Rueda和Haisch 1998a,1998b)。在亚克卡提主义的情况下,这种惯性反作用力是牛顿的,并且在相对论的情况下,它完全再现了牛顿定律的众所周知的相对论延伸。该分析表明,普通的F载体= MA - 载体和牛顿运动方程的相对论形式可以源自应用于电磁零点场的Maxwell等式。我们希望能够将来扩展到该分析,以便比仅在本文讨论的电磁载体的更多一般版本。

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