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首页> 外文期刊>The journal of high energy physics >Late-time-accelerated expansion arisen from gauge fields in an anisotropic background and a fruitful trick for Noether’s approach
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Late-time-accelerated expansion arisen from gauge fields in an anisotropic background and a fruitful trick for Noether’s approach

机译:从一个各向异性背景中的仪表领域中出现的延长时间加速扩张和Noether方法的富有成效的伎俩

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摘要

A bstract In this paper, a modified teleparallel gravity action containing a coupling be- tween a scalar field potential and magnetism, in anisotropic and homogeneous backgrounds, is investigated through Noether symmetry approach. The focus of this work is to describe late-time-accelerated expansion. Since finding analytical solutions carrying all conserved currents emerged by Noether symmetry approach, is very difficult, hence regularly in the literature, the authors split the total symmetry into sub-symmetries and then select, usually, some of them to be carried by the solutions. This manner limits the forms of unknown functions obtained. However, in ref. [67], B.N.S. approach was proposed in order to solve such problems but its main motivation was carrying more conserved currents by solutions. In this paper, by eliminating the aforementioned limitation as much as possible, a trick leading to some graceful forms of unknown functions is suggested. Through this fruitful approach, the solutions may carry more conserved currents than usual ways and maybe new forms of symmetries. I named this new approach to be CSSS-trick ( C ombination of S ub-symmetries through S pecial S elections). With this approach, it is demonstrated that the unified dark matter potential is deduced by the gauge fields. Utilizing the B-function method, a detailed data analysis of results obtained yielding perfect agreements with recent observational data are performed. And finally, the Wheeler-De Witt (WDW) equation is discussed to demonstrate recov- ering the Hartle criterion due to the oscillating feature of the wave function of the universe.
机译:本文采用虚拟化的透视概率和磁性,在各向异性和均匀的背景下进行耦合的改进的俯卧撑重力作用,通过纬向对称方法研究了耦合。这项工作的重点是描述延迟时加速的扩张。由于寻找携带所有保守电流的分析解决方案,因此是非常困难的,因此定期在文献中,该作者将总对称性分成子对称性,然后通常,其中一些是通过解决方案携带。这种方式限制所获得的未知功能的形式。但是,在参考文章中。 [67],B.N.S.提出了方法,以解决这些问题,但其主要动机是通过解决方案提供更多保守的电流。在本文中,通过消除最高的限制尽可能多,提出了导致一些优雅形式的未知功能的技巧。通过这种丰富的方法,解决方案可能比通常的方式携带更节约的电流,也许是新的对称形式。我将这种新方法命名为CSSS-Trick(C通过S Peecial S选举的Sub-Symeties C的COMBination)。通过这种方法,证明统一的暗物质电位由仪表推导出来。利用B函数方法,进行了与最近的观察数据获得完美协议的结果的详细数据分析。最后,讨论了轮车-DEWITT(WDW)方程以证明由于宇宙的波形函数的振荡特征而恢复Hartle标准。

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