Quantum Effects in General Relativity: Investigating Repulsive Gravity of Black Holes at Large Distances

P. Chiarelli
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Abstract

This paper proposes a theoretical study that investigates quantum effects on the gravity of black holes. This study utilizes a gravitational model that incorporates quantum mechanics derived from the classical-like quantum hydrodynamic representation. This research calculates the mass density distribution of quantum black holes, specifically in the case of central symmetry. The gravity of a quantum black hole shows contributions coming from quantum potential energy, which is also sensitive to the presence of a background of gravitational noise. The additional energy, stored in quantum potential fluctuations and constituting a form of dark energy, leads to a repulsive gravity in the weak gravity limit. This repulsive gravity overcomes the attractive classical Newtonian force at large distances of order of the intergalactic length.
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广义相对论中的量子效应:研究远距离黑洞的排斥性引力
本文提出了一种研究黑洞引力的量子效应的理论研究。本研究利用了一个引力模型,该模型结合了从经典的量子流体力学表示中衍生出来的量子力学。这项研究计算了量子黑洞的质量密度分布,特别是在中心对称的情况下。量子黑洞的引力表现出来自量子势能的贡献,量子势能对引力噪声背景的存在也很敏感。存储在量子势涨落中的额外能量构成了暗能量的一种形式,导致弱引力极限中的排斥引力。这种排斥性引力在星系间长度数量级的大距离上克服了经典牛顿引力的吸引力。
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