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Dark energy, antimatter gravity and geometry of the Universe

机译:暗能量,反物质引力和宇宙几何

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摘要

This article is based on two hypotheses. The first one is the existence of the gravitational repulsion between particles and antiparticles. Consequently, virtual particle-antiparticle pairs in the quantum vacuum might be considered as gravitational dipoles. The second hypothesis is that the Universe has geometry of a four-dimensional hyper-spherical shell with thickness equal to the Compton wavelength of a pion, which is a simple generalization of the usual geometry of a 3-hypersphere. It is striking that these two hypotheses lead to a simple relation for the gravitational mass density of the vacuum, which is in very good agreement with the observed dark energy density. It might be a sign that QCD fields provide the largest contribution to the gravitational mass of the physical vacuum; contrary to the prediction of the Standard Model that QCD contribution is much smaller than some other contributions.
机译:本文基于两个假设。第一个是粒子与反粒子之间存在重力排斥。因此,量子真空中的虚拟粒子-反粒子对可被视为重力偶极子。第二个假设是,宇宙具有四维超球形壳的几何形状,其厚度等于pion的康普顿波长,这是对3超球体通常几何形状的简单概括。令人惊讶的是,这两个假设导致了真空的引力质量密度的简单关系,这与观察到的暗能量密度非常吻合。这可能表明,QCD场对物理真空的重力有最大的贡献。与标准模型的预测相反,QCD的贡献远小于其他一些贡献。

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