首页> 外文期刊>Journal of High Energy Physics, Gravitation and Cosmology >Showing Fjortof’s Theorem Does Not Apply for Defining Instability for Early Universe Thermodynamic Potentials. Asking If Nucleated Particles Result at/before Electro-Weak Era Due to Injection of Matter-Energy at the Big Bang?
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Showing Fjortof’s Theorem Does Not Apply for Defining Instability for Early Universe Thermodynamic Potentials. Asking If Nucleated Particles Result at/before Electro-Weak Era Due to Injection of Matter-Energy at the Big Bang?

机译:显示Fjortof定理不适用于定义早期宇宙热力学势的不稳定性。询问在大爆炸时注入物质能量是否在电弱时代之前/之前产生了有核粒子?

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This paper uses the “Fjortoft theorem” for defining necessary conditions for instability. The point is that it does not apply in the vicinity of the big bang. We apply this theorem to what is called by T. Padmanabhan a thermodynamic potential which would become unstable if conditions for the applications of “Fjortoft’s theorem” hold. In our case, there is no instability, so a different mechanism has to be appealed to. In the case of vacuum nucleation, we argue that conditions exist for the nucleation of particles as of the electroweak regime, due to injecting material from a node point, in spacetime. This regime of early universe creation coexists with the failure of applications of “Fjortoft” theorem in such a way as to give necessary and sufficient conditions for matter creation, in a way similar to the Higgs Boson.
机译:本文使用“ Fjortoft定理”定义不稳定的必要条件。关键是它不适用于大爆炸附近。我们将此定理应用于T. Padmanabhan所称的热力学势,如果“ Fjortoft定理”的应用条件成立,该势将变得不稳定。在我们的情况下,不存在不稳定,因此必须呼吁采用其他机制。在真空成核的情况下,我们认为从电弱状态开始,存在粒子成核的条件,这是由于在时空中从节点注入材料造成的。这种早期的宇宙创造体制与“ Fjortoft”定理的应用失败并存,其方式类似于希格斯玻色子,为物质创造提供了必要和充分的条件。

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