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首页> 外文期刊>Universal Journal of Physics and Application >Dark Energy: Accelerating Expansion of the Universe and of the Higgs Quantum Space
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Dark Energy: Accelerating Expansion of the Universe and of the Higgs Quantum Space

机译:暗能量:加速宇宙和希格斯量子空间的扩展

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Dark energy, accelerating the expansion of the universe, is fourteen times larger than the ordinary mass-energy in the universe. So much energy can be found only in the scenario of the creation of the universe. Quantum condensation of the Higgs condensate (HC), after the Big-Bang, when the temperature fell through 10~(15) Kelvin, liberates hundreds of GeV/boson. The Higgs potential energy well has the form: U(ρ) = ?n(?*?) + m(?*?)~(2), where n > m, ? is a complex order parameter and ρ = ?*? is the condensate density. The depth of this potential well is generic and uniform throughout the universe. If ρ > n/m, the HC can lower its energy by freely expanding its volume, which is related with the accelerated expansion of the universe. Recent experimental observations, achieved with the help of the tightly synchronized clocks in orbit, show that the Higgs Quantum Space (HQS), ruling the inertial motion of matter and propagating light, is circulating round earth, round the sun and round the galactic center according to velocity fields, consistent with the local main astronomical motions, thereby appropriately creating the observed gravitational dynamics. In these Keplerian velocity fields, earth is very closely stationary with respect to the HQS, which explains the isotropy of light with respect to earth. It also explains the absence of the gravitational slowing of the GPS clocks, predicted by General Relativity, but not observed. This HQS-dynamics however cannot explain why the recession between the galaxies causes no light anisotropy. The isotropy of light proves that this recession too lets earth, the sun and the Milky-Way galaxy stationary with respect to the HQS. Obviously, this becomes possible only if the expansion of the universe is expansion of the HQS itself, showing that the expansion of the universe follows perfectly the expansion of the HQS itself.
机译:加速宇宙膨胀的暗能量是宇宙中普通质量能的十四倍。只有在宇宙创造的场景中才能发现如此多的能量。在大爆炸之后,当温度下降到10〜(15)开尔文时,希格斯冷凝物(HC)的量子冷凝会释放出数百GeV /玻色子。希格斯势能井的形式为:U(ρ)=?n(?*?)+ m(?*?)〜(2),其中n> m,?是复数阶参数且ρ=?*?是冷凝物密度。在整个宇宙中,这口潜在井的深度是通用且统一的。如果ρ> n / m,则HC可以通过自由扩展其体积来降低其能量,这与宇宙的加速扩展有关。在轨道紧密同步的时钟的帮助下,最近的实验观测表明,支配物质惯性运动和传播光的希格斯量子空间(HQS)围绕地球,围绕太阳和围绕银河系中心旋转与局部主要天文运动相一致的速度场,从而适当地产生了观测到的引力动力学。在这些开普勒速度场中,地球相对于HQS非常固定,这说明了光相对于地球的各向同性。这也解释了没有出现GPS时钟的重力减速现象,这是由广义相对论预测的,但是没有观察到。但是,这种HQS动力学无法解释为什么银河系之间的衰退不会引起光各向异性。光的各向同性证明,这种衰退也使地球,太阳和银河系相对于HQS保持静止。显然,只有当宇宙的膨胀是HQS本身的膨胀时,这才有可能,这表明宇宙的膨胀恰好跟随HQS自身的膨胀。

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