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Relativistic Quantitative Determination of the “Mysterious” Differences in the Hubble Constant

机译:相对论的定量测定哈勃恒定的“神秘”差异

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This paper discusses the “Hubble constant measurement—mystery”. Independent measurements of this cosmic parameter, referred to as H _( 0 ) in abbreviated form, have all led to different values, with the highest value ≈ 74 km · s ~( -1 ) · Mpc ~( -1 ) and the lowest ≈ 67 km · s ~( -1 ) · Mpc ~( -1 ) , where km denotes kilometer, s second and Mpc ~( -1 ) megaparsec. These measurements have mainly been obtained with space telescopes. Apparently, up to now there was no way to explain the differences. However, previously published studies seem to regard the problem of the different measurement results for H _( 0 ) [ 1 , ? 2 ]. I have shown that due to a symmetrical expansion of the Minkowski space (SMS), each respective frame of reference for an observer, who rests in the zero point of the frame, is converted into a state of apparent rest relative to the cosmic microwave background (CMB) radiation. This SMS-relativistic effect also seems to be responsible for the different measurement results of the Hubble constant, especially through space telescopes.
机译:本文讨论了“哈勃恒定测量 - 谜”。这种宇宙参数的独立测量,称为 h _(0),缩写形式,所有导致不同的值,最高值≈7km·s〜(-1)·mpc〜(-1)而最低≈67公里·s〜(-1)·mpc〜(-1),那里是公里,steply,second和mpc〜(-1)megaparsec。这些测量主要是用空间望远镜获得的。显然,到目前为止,现在没有办法解释差异。然而,先前公布的研究似乎认为 h _(0)[1,的不同测量结果的问题。 2]。我已经表明,由于Minkowski空间(SMS)的对称扩展,每个相应的参考帧,用于在帧的零点的零点中搁置,被转换为相对于宇宙微波背景的明显休息状态(CMB)辐射。这种SMS相对论效果似乎也负责霍布尔常数的不同测量结果,尤其是通过空间望远镜。

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