避免暗能量与宇宙向量重合的问题

J. B. Jiménez, A. L. Maroto
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引用次数: 25

摘要

我们表明,宇宙尺度上的矢量理论是暗能量的极好候选者。我们考虑两个不同的例子,它们都是没有维度参数和位势项的理论,具有早期宇宙的自然初始条件和与ΛCDM相同数量的自由参数。第一个在辐射期间表现出缩放行为,今天表现出强烈的幻相,以“大冻结”奇点结束。该模型为SNIa Gold数据集提供了迄今为止最好的拟合。我们考虑的第二个理论是标准电磁学。我们证明了宇宙尺度上的时间电磁场产生了一个有效的宇宙常数,并且在电弱尺度暴胀期间产生的原始电磁量子涨落不仅可以自然地解释该场的存在,还可以解释暗能量密度的测量值。该理论与所有的局部重力测试兼容,并且不受经典或量子不稳定性的影响。因此,不仅……
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Avoiding the dark energy coincidence problem with a cosmic vector
We show that vector theories on cosmological scales are excellent candidates for dark energy. We consider two different examples, both are theories with no dimensional parameters nor potential terms, with natural initial conditions in the early universe and the same number of free parameters as ΛCDM. The first one exhibits scaling behaviour during radiation and a strong phantom phase today, ending in a “big‐freeze” singularity. This model provides the best fit to date for the SNIa Gold dataset. The second theory we consider is standard electromagnetism. We show that a temporal electromagnetic field on cosmological scales generates an effective cosmological constant and that primordial electromagnetic quantum fluctuations produced during electroweak scale inflation could naturally explain, not only the presence of this field, but also the measured value of the dark energy density. The theory is compatible with all the local gravity tests, and is free from classical or quantum instabilities. Thus, not only ...
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