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首页> 外文期刊>Astroparticle physics >High-energy scalarons in R 2 gravity as a model for Dark Matter in galaxies
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High-energy scalarons in R 2 gravity as a model for Dark Matter in galaxies

机译:R 2引力中的高能标量作为星系中暗物质的模型

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We show that in the framework of R 2 gravity and in the linearized approach it is possible to obtain spherically symmetric stationary states that can be used as a model for galaxies. Such approach could represent a solution to the Dark Matter Problem. In fact, in the model, the Ricci curvature generates a high energy term that can in principle be identified as the dark matter field making up the galaxy. The model can also help to have a better understanding on the theoretical basis of Einstein-Vlasov systems. Specifically, we discuss, in the linearized R 2 gravity, the solutions of a Klein-Gordon equation for the spacetime curvature. Such solutions describe high energy scalarons, a field that in the context of galactic dynamics can be interpreted like the no-light-emitting galactic component. That is, these particles can be figured out like wave-packets showing stationary solutions in the Einstein-Vlasov system. In such approximation, the energy of the particles can be thought of as the galactic dark matter component that guarantees the galaxy equilibrium. Thus, because of the high energy of such particles the coupling constant of the R 2-term in the gravitational action comes to be very small with respect to the linear term R. In this way, the deviation from standard General Relativity is very weak, and in principle the theory could pass the Solar System tests. As pertinent to the issue under analysis in this paper, we present an analysis on the gravitational lensing phenomena within this framework. Although the main goal of this paper is to give a potential solution to the Dark Matter Problem within galaxies, we add a section where we show that an important property of the Bullet Cluster can in principle be explained in the scenario introduced in this work. To the end, we discuss the generic prospective to give rise to the Dark Matter component of most galaxies within extended gravity.
机译:我们表明,在R 2引力的框架中和在线性化方法中,可以获得球形对称的稳态,可以用作星系模型。这种方法可以代表对暗物质问题的解决方案。实际上,在该模型中,里奇曲率产生了一个高能项,从原理上讲,它可以被认为是组成银河系的暗物质场。该模型还可以帮助您在Einstein-Vlasov系统的理论基础上有一个更好的理解。具体来说,我们在线性化的R 2重力中讨论时空曲率的Klein-Gordon方程的解。这样的解决方案描述了高能标量,该领域在银河系动力学的背景下可以像不发光的银河系成分那样被解释。即,可以像在爱因斯坦-弗拉索夫系统中显示固定解的波包一样来计算这些粒子。在这种近似中,粒子的能量可以被认为是保证星系平衡的银河暗物质成分。因此,由于此类粒子的能量很高,因此重力作用中的R 2项的耦合常数相对于线性项R很小。这样,与标准广义相对论的偏差非常小,从理论上讲,该理论可以通过太阳系测试。与本文所分析的问题有关,我们在此框架内对重力透镜现象进行了分析。尽管本文的主要目的是为星系中的暗物质问题提供潜在的解决方案,但我们添加了一节,表明在原则上可以在此工作介绍的场景中解释子弹团的重要属性。最后,我们讨论了在扩展引力范围内产生大多数星系的暗物质成分的一般预期。

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