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首页> 外文期刊>The journal of high energy physics >Scalar field as an intrinsic time measure in coupled dynamical matter-geometry systems. I. Neutral gravitational collapse
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Scalar field as an intrinsic time measure in coupled dynamical matter-geometry systems. I. Neutral gravitational collapse

机译:标量字段作为耦合动力量 - 几何系统中的内在时间测量。 I.中性引力崩溃

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A bstract There does not exist a notion of time which could be transferred straightforwardly from classical to quantum gravity. For this reason, a method of time quantification which would be appropriate for gravity quantization is being sought. One of the existing proposals is using the evolving matter as an intrinsic ‘clock’ while investigating the dynamics of gravitational systems. The objective of our research was to check whether scalar fields can serve as time variables during a dynamical evolution of a coupled multicomponent matter-geometry system. We concentrated on a neutral case, which means that the elaborated system was not charged electrically nor magnetically. For this purpose, we investigated a gravitational collapse of a self-interacting complex and real scalar fields in the Brans-Dicke theory using the 2+2 spacetime foliation. We focused mainly on the region of high curvature appearing nearby the emerging singularity, which is essential from the perspective of quantum gravity. We investigated several formulations of the theory for various values of the Brans-Dicke coupling constant and the coupling between the Brans-Dicke field and the matter sector of the theory. The obtained results indicated that the evolving scalar fields can be treated as time variables in close proximity of the singularity due to the following reasons. The constancy hypersurfaces of the Brans-Dicke field are spacelike in the vicinity of the singularity apart from the case, in which the equation of motion of the field reduces to the wave equation due to a specific choice of free evolution parameters. The hypersurfaces of constant complex and real scalar fields are spacelike in the regions nearby the singularities formed during the examined process. The values of the field functions change monotonically in the areas, in which the constancy hypersurfaces are spacelike.
机译:Bstract不存在可以从经典转移到量子重力的时间概念。因此,正在寻求适合重力量化的时间量化方法。其中一个提出的建议在调查重力系统的动态时,现有的提案是在内在的“时钟”中。我们的研究目的是检查标量字段是否可以在耦合多组分物质 - 几何系统的动态演进过程中用作时间变量。我们集中在中性情况下,这意味着阐述的系统没有电气也没有电气地充电。为此目的,我们使用2 + 2空间叶片调查了砖迪克理论中的自交互复杂和实际标量领域的重力崩溃。我们主要集中在新兴奇点附近出现的高曲率区域,这对于量子重力的角度来说至关重要。我们调查了诸如砖 - Dicke耦合常数的各种值的若干理论的制剂,以及钢筋 - 迪克场与理论的物质部门之间的耦合。所获得的结果表明,由于以下原因,可以将演变的标量场接近奇异度紧密接近的时间变量。麸的恒定超缺陷在奇点附近与奇点之外的壳体,其中场的运动方程由于自由进化参数的特定选择而降低到波浪方程。恒定复杂和实际标量场的高度缺陷在附近在检查过程中形成的奇点的区域中是薄片。现场功能的值在区域中单调地改变,其中持续过度缺陷是空间的。

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