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Relativistic mass due to a dilatant vacuum leads to a quantum reformulation of the relativistic kinetic energy

机译:由于膨胀性真空引起的相对论物质导致相对论动能的量子重构

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Relativistic mass change with speed is considered here as the effect of a viscous, dilatant vacuum, whose apparent viscosity is related to the Lorentz factor. Transient solid-like vacuum due to shear stress is presented as the reason why vacuum prevents the speed of massive objects from being indefinitely increased. Such a vacuum - that in a previous study allowed to exactly calculate the Pioneer anomaly, Mercury's perihelion precession, and was shown to be compatible with stable planetary orbits - leads here to a quantum formula for the relativistic kinetic energy. A formula which distinguishes between the case of accelerated charges in a vacuum, for which a Stokes-Einstein radius comes into play, and the case of accelerated macroscopic bodies, for which the quantum potential term vanishes. In this way, incidentally, one obtains again correct results for the Pioneer 10, confirming the role of vacuum's viscous force. This description of a quantum mechanism underlying the relativistic kinetic energy may be also helpful in constructing a theory of quantum relativity and may even tell us more about the interactions of matter with the Higgs field and the dark sector: two issues which can be themselves linked to a dilatant vacuum.
机译:这里认为相对论的质量变化在这里被认为是粘性膨胀真空的效果,其表观粘度与洛伦兹因子有关。由于剪切应力引起的瞬态固体真空作为为什么真空防止块状物体的速度无限制地增加。这种真空 - 在先前的研究中,允许精确地计算Pioneer异常,汞的近期进程,并且被证明与稳定的行星轨道相容 - 这里引导到相对论动能的量子公式。在真空中的加速电荷的情况下区分的公式,其中斯托克斯 - 爱因斯坦半径发挥作用,以及加速的宏观体的情况,量子潜在术语消失。以这种方式,顺便提及,一个人再次获得先行者10的正确结果,确认真空的粘性力的作用。这种相对论动能的量子机制的描述也可能有助于构建量子相对论的理论,甚至可以告诉我们与HIGGS领域和黑暗部门的物质相互作用:两个问题是如何与之相关的膨胀剂真空。

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