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Light bending and gravitational lensing in Brans-Dicke theory

机译:Brans-Dicke理论中的光弯曲和引力透镜

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As an important candidate theory of gravity, Brans-Dicke theory has been widely studied. In this paper, we investigate light bending and gravitational lensing by compact objects in Brans-Dicke theory in weak gravitational field. Firstly, we present a general formalism for calculating higher-order corrections to light bending angle and lensing observables for a static, spherically symmetric and flat spacetime, in which the metric is given in the isotropic coordinates. Secondly, we apply the general formalism to Brans-Dicke theory and get the corresponding light bending angle and lensing observables. Our results show that, although the sums over the low-order correction terms in magnifications of the primary and secondary images do not dependent on the theories of gravity, the sums over correction terms with order higher than three do. Moreover, we show that the total magnification has a non-vanishing first-order correction, rather than a vanishing contribution concluded in the literature. We find that the corrections to lensing observables of BD theory close to those of GR when the parameterωtends to +∞ from?32, while opposition occurs whenωtends to ?2 from ?∞.
机译:作为重力的重要候选理论,布朗斯-迪克理论得到了广泛的研究。在本文中,我们研究了弱引力场中Brans-Dicke理论中的紧凑物体的光弯曲和引力透镜作用。首先,我们提出了一种通用形式主义,用于计算静态,球对称和平坦时空的光弯曲角和透镜可观测值的高阶校正,其中度量以各向同性坐标给出。其次,我们将一般形式主义应用于Brans-Dicke理论,并得到相应的光弯曲角度和可观察到的透镜。我们的结果表明,尽管在原始图像和次要图像的放大倍数中低阶校正项的总和不依赖于重力理论,但高于三阶的校正项的总和却不依赖重力理论。此外,我们表明总放大率没有消失的一阶校正,而不是文献中得出的消失的贡献。我们发现,当参数ω从?32趋于+∞时,BD理论的透镜可观测值的校正接近于GR,而当ω从?∞趋于φ2时,则发生了对立。

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