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首页> 外文期刊>Classical and Quantum Gravity: An Interantional Journal of Gravity Geometry of Field Theories Supergravity Cosmology >Linearized modified gravity theories with a cosmological term: advance of perihelion and deflection of light
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Linearized modified gravity theories with a cosmological term: advance of perihelion and deflection of light

机译:具有宇宙学术语的线性化改性的重力理论:光线层和光线的偏转

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Two different ways of generalizing Einstein's general theory of relativity with a cosmological constant to Brans-Dicke type scalar-tensor theories are investigated in the linearized field approximation. In the first case a cosmological constant term is coupled to a scalar field linearly whereas in the second case an arbitrary potential plays the role of a variable cosmological term. We see that the former configuration leads to a massless scalar field whereas the latter leads to a massive scalar field. General solutions of these linearized field equations for both cases are obtained corresponding to a static point mass. Geodesics of these solutions are also presented and solar system effects such as the advance of the perihelion, deflection of light rays and gravitational redshift were discussed. In general relativity a cosmological constant has no role in these phenomena. We see that for the Brans-Dicke theory, the cosmological constant also has no effect on these phenomena. This is because solar system observations require very large values of the Brans-Dicke parameter and the correction terms to these phenomena becomes identical to GR for these large values of this parameter. This result is also observed for the theory with arbitrary potential if the mass of the scalar field is very light. For a very heavy scalar field, however, there is no such limit on the value of this parameter and there are ranges of this parameter where these contributions may become relevant in these scales. Galactic and intergalactic dynamics is also discussed for these theories at the latter part of the paper with similar conclusions.
机译:在线化场近似地研究了两种不同的相对性与宇宙常数的相对论的一般相对论的方式。在第一种情况下,宇宙学常数项以线性地耦合到标量场,而在第二种情况下,任意潜力起到可变宇宙学术语的作用。我们看到前一个配置导致无麻标量角,而后者会导致大规模的标量场。对对应于静态点质量获得两种情况的这些线性化场方程的一般解。还介绍了这些解决方案的测量仪,并讨论了太阳系效应,例如透射光线的偏振,光线偏转和引力射频的前进。在一般相对性中,宇宙学常数在这些现象中没有任何作用。我们看到,对于砖迪克理论,宇宙学常数也没有对这些现象的影响。这是因为太阳系观察需要大量的Brans-Dicke参数值,并且对于这些参数的这些大值,这些现象的校正项变得与GR相同。如果标量场的质量非常轻,则该结果也观察到具有任意潜力的理论。然而,对于一个非常沉重的标量字段,对该参数的值没有这样的限制,并且该参数的范围在这些参数中,这些贡献可能在这些比例中变得相关。本文后半部分的这些理论也讨论了银河系和夜间动力学,结论类似。

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