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Speed of Gravitation and Electromagnetic Waves through the Dark Energy of Intergalactic Space and Its Implications of a Unified Theory

机译:穿过星际空间暗能量的引力和电磁波速度及其统一理论的含义

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The recent finding that gravitational waves (GW170817) traveled at the same speed as electromagnetic (EM) waves (GRB 170817A) from a binary neutron star merger does not necessarily mean that they traveled throughout their journey at speed c. Some recent works by the author (2015) Journal of Modern Physics, 6, 78-87, and 1360-1370; (2016), 7, 1829-1844; (2017), 8, 622-635 show that the diminished brightness of Type Ia supernovae (SNe Ia) can be explained by assuming that dark energy, instead of having a negative pressure, has an index of refraction n, causing the speed of light through intergalactic space (IGS) to be reduced to c, with? n style="white-space:nowrap;">≈1.5. It follows that GWs (not considered in the previous works) would also travel with speed c through IGS. However, speed of GWs and EMWs within galaxies themselves is c. A brief review of the model is given, together with other predictions, e.g., new values for the Hubble constant and age of the universe, and necessary absence of correlation of neutrinos with gamma ray bursts (GRBs), in agreement with numerous searches. In the previous works, there were implications of a unified theory. If the model holds, since GWs would experience the same speed reduction as EMWs, this would further support unification. An improved falsification methodology for a previously proposed astronomical test based on discordant redshifts is given.
机译:最近的发现,引力波(GW170817)与双星中子星合并产生的电磁(EM)波(GRB 170817A)的传播速度相同,并不一定意味着它们以 c 的速度传播。作者(2015年) Journal of Modern Physics ,6、78-87和1360-1370; (2016),7,1829-1844; (2017),8,622-635表明Ia型超新星(SNe Ia)亮度的降低可以通过假设暗能量而不是负压具有折射率 n ,导致穿过星际空间(IGS)的光速降低到c / n,原因是? n style =“ white-space:nowrap;”>≈ 1.5。因此,GW(在先前的工作中没有考虑)也将以c / n的速度通过IGS。但是,星系自身中GW和EMW的速度为 c 。对该模型进行了简要回顾,并给出了其他预测,例如与哈勃常数和宇宙年龄有关的新值,以及与众多搜索一致的中微子与伽马射线爆发(GRB)的相关性的必要缺失。在先前的著作中,存在着统一理论的含义。如果该模型成立,那么由于GW的减速速度与EMW相同,因此这将进一步支持统一。针对先前提出的基于不一致红移的天文测试,提出了一种改进的伪造方法。

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