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Fomin's Conception of Quantum Cosmogenesisl

机译:福明的量子宇宙发生论

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The main aim of this paper is to extend the early approach to quantum cosmogenesis provided by Fomin. His approach was developed independently of the well-known Tryon description of creation of a closed universe as a process of quantum vacuum fluctuation. We apply Fomin's concept to derive the cosmological observables. We argue that Fomin's idea from his work of 1973, in contrast to Tryon's one, has an impact on the current Universe models, and the proposed extension of his theory can now be tested by distant SNIa supernovae. Fomin's idea of Universe creation is based on an intersection of two fundamental theories: general relativity and quantum field theory with the contemporary cosmological models with dark energy. As a result of comparison with contemporary approaches concerning dark energy, we have found out that Fomin's idea appears in the context of explaining the present acceleration of the Universe: cosmological models with decaying vacuum. Contemporary it appears in the form of a Ricciscalar dark energy connected with the holographic principle. We also show that Fomin's model admits a bounce instead of an initial singularity. We demonstrate that Fomin's model of cosmogenesis can be simulated, and using the SNIa data, the values of model parameters are in agreement with observations.
机译:本文的主要目的是扩展Fomin提供的量子宇宙发生的早期方法。他的方法是独立于著名的Tryon描述封闭宇宙作为量子真空涨落过程的过程而开发的。我们应用Fomin的概念来推导宇宙学的可观测量。我们认为,福明在1973年的工作中提出的想法与特伦的想法相反,这对当前的宇宙模型产生了影响,并且他的理论的提议扩展现在可以由遥远的SNIa超新星检验。 Fomin的宇宙创造思想是基于两个相对论的相交:广义相对论和量子场论与具有暗能量的当代宇宙学模型。通过与有关暗能量的现代方法进行比较的结果,我们发现福明的想法出现在解释宇宙的当前加速的上下文中:具有衰减的真空的宇宙学模型。在当代,它以与全息原理相关的Ricciscalar黑暗能量的形式出现。我们还表明,Fomin的模型接受反弹,而不是初始的奇点。我们证明可以模拟Fomin的宇宙发生模型,并使用SNIa数据,模型参数的值与观测值一致。

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