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Dark Energy, Exponential Expansion, CMB, Wave/Particle Duality ??All Result from Lorentz-Covariance of Boltzmann’s Transport Equation

机译:暗能量,指数膨胀,CMB,波/颗粒对偶性-所有结果均来自玻耳兹曼输运方程的洛伦兹协方差

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摘要

The Boltzmann transport equation is the rigorous continuity equation for the angular flux f(r, t, v) of photons at positions r, time t, moving in direction v, and interacting with a surrounding medium by localized collisions. This equation is not necessarily Lorentz-covariant, but can be specialized to a Lorentz-covariant equation describing the propagation of a photon distribution through space. However, this requirement of Lorentz-covariance of the Boltzmann transport equation then leads to a wave-particle duality, in which an ensemble of photons behave as waves, but in which each individual photon interferes only with itself. Applied on cosmological scales, this requirement of Lorentz-covariance of the Boltzmann transport equation also leads to an apparent quantum multiplication, which could explain the existence of the huge amounts of the mysterious “dark energy” that appears to permeate the universe. In addition, it also requires the universe to appear subjected to an exponential expansion as observed, similar to a perspective distortion in time, and then also as a consequence to appear surrounded by a cosmic microwave background radiation (CMB) with an exact Planck spectrum, as observed.
机译:玻尔兹曼输运方程式是严格的连续性方程式,用于在位置r,时间t,沿v方向移动并通过局部碰撞与周围介质相互作用的光子的角通量f(r,t,v)。该方程不一定是洛伦兹协变方程,而是可以专门化为描述光子分布在空间中传播的洛伦兹协变方程。然而,玻耳兹曼输运方程的洛伦兹协方差的要求导致了波粒对偶性,其中光子的整体表现为波,但是每个单独的光子仅与其自身发生干涉。在宇宙学尺度上,玻耳兹曼输运方程的洛伦兹-协方差的要求也导致了明显的量子倍增,这可以解释似乎存在于宇宙中的大量神秘“暗能量”的存在。此外,它还要求宇宙看起来像经历时间的透视畸变一样,经受观察到的指数膨胀,然后还因此出现被具有精确普朗克光谱的宇宙微波背景辐射(CMB)包围,如观察到的。

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