Traversable wormhole model with massive gravitons, two fluids, and a variable gravity

IF 1.1 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY
R. El-Nabulsi, Waranont Anukool
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Abstract

We construct a new cosmological model based on relativistic theory of gravity characterized by massive gravitons. The new Friedmann–Robertson–Walker model is characterized by the presence of a static traversable wormhole, massive gravitons, and a variable gravitational coupling constant. To recover the Bianchi identity, a second cosmic fluid is introduced in the theory. Motivated from cosmic dark radiation phenomenological arguments, which suggest that the dynamical component of dark energy could be dominated by a bath of dark radiation, we assume that the original cosmic fluid is radiative, whereas the new cosmic fluid is phantom. The total equation of state of our model is equal to −1. The new model is characterized by an effective Hubble parameter. The solutions of the dynamical equations reveal an accelerated universe with a scale factor of hyperbolic type which allows the deceleration parameter to change sign from a decelerating phase to an accelerating phase. We have evaluated the deceleration parameter, the jerk and the present day variations of the gravitational constant which agree with astronomical observations.
具有大质量引力子、两种流体和可变引力的可穿越虫洞模型
我们在相对论引力理论的基础上构建了一个以大质量引力子为特征的新宇宙学模型。新的弗里德曼-罗伯逊-沃克模型的特点是存在静态可穿越虫洞、大质量引力子和可变引力耦合常数。为了恢复比安奇特性,理论中引入了第二宇宙流体。宇宙暗辐射现象学的论证表明,暗能量的动力学成分可能由暗辐射浴所主导,受此启发,我们假设原来的宇宙流体是辐射流体,而新的宇宙流体是幽灵流体。我们模型的总状态方程等于-1。新模型的特征是有效哈勃参数。动力学方程的解揭示了一个加速宇宙的双曲型尺度因子,它允许减速参数从减速阶段变为加速阶段。我们评估了减速参数、抽搐和引力常数的当今变化,这些都与天文观测结果一致。
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来源期刊
Canadian Journal of Physics
Canadian Journal of Physics 物理-物理:综合
CiteScore
2.30
自引率
8.30%
发文量
65
审稿时长
1.7 months
期刊介绍: The Canadian Journal of Physics publishes research articles, rapid communications, and review articles that report significant advances in research in physics, including atomic and molecular physics; condensed matter; elementary particles and fields; nuclear physics; gases, fluid dynamics, and plasmas; electromagnetism and optics; mathematical physics; interdisciplinary, classical, and applied physics; relativity and cosmology; physics education research; statistical mechanics and thermodynamics; quantum physics and quantum computing; gravitation and string theory; biophysics; aeronomy and space physics; and astrophysics.
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