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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Invariant definition of rest mass and dynamics of particles in 4D from bulk geodesics in brane-world and non-compact Kaluza-Klein theories
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Invariant definition of rest mass and dynamics of particles in 4D from bulk geodesics in brane-world and non-compact Kaluza-Klein theories

机译:皮层世界和非紧凑型Kaluza-Klein理论中大块测地线在4D中的静止质量和粒子动力学的不变定义

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摘要

In the Randall-Sundrum brane-world scenario and other non-compact Kaluza-Klein theories, the motion of test particles is higher-dimensional in nature. In other words, all test particles travel on five-dimensional geodesics but observers, who are bounded to spacetime, have access only to the 4D part of the trajectory. Conventionally, the dynamics of test particles as observed in 4D is discussed on the basis of the splitting of the geodesic equation in 5D. However, this procedure is not unique and therefore leads to some problems. The most serious one is the ambiguity in the definition of rest mass in 4D, which is crucial for the discussion of the dynamics. We propose the Hamilton-Jacobi formalism, instead of the geodesic one, to study the dynamics in 4D. On the basis of this formalism we provide an unambiguous expression for the rest mass and its variation along the motion as observed in 4D. It is independent of the coordinates and any parameterization used along the motion. Moreover, we are able to show a comprehensive picture of the various physical scenarios allowed in 4D, without having to deal with the subtle details of the splitting formalism. Moreover we study the extra non-gravitational forces perceived by an observer in 4D who describes the geodesic motion of a bulk test particle in 5D. Firstly, we show that the so-called fifth force fails to account for the variation of rest mass along the paxticle's worldline. Secondly, we offer here a new definition that correctly takes into account the change of mass observed in 4D. [References: 44]
机译:在Randall-Sundrum的大脑世界场景和其他非紧凑的Kaluza-Klein理论中,测试粒子的运动实际上是高维的。换句话说,所有测试粒子都在五维测地线上移动,但受时空限制的观察者只能访问轨迹的4D部分。常规地,在5D中测地线方程的分裂的基础上讨论了在4D中观察到的测试粒子的动力学。但是,此过程不是唯一的,因此会导致一些问题。最严重的一个问题是4D中静止质量的定义不明确,这对于讨论动力学至关重要。我们建议使用Hamilton-Jacobi形式主义而不是大地测量学来研究4D动力学。基于这种形式主义,我们为其余质量及其沿运动的变化提供了明确的表达,如在4D中观察到的。它独立于坐标以及沿运动使用的任何参数设置。此外,我们能够全面展示4D允许的各种物理场景,而不必处理分割形式主义的细微细节。此外,我们研究了观察者在4D中感知到的额外非重力,该观察者描述了5D中大量测试粒子的测地线运动。首先,我们表明,所谓的第五力未能解释沿质点世界线的静止质量的变化。其次,我们在此处提供了一个新定义,该定义正确考虑了4D中观察到的质量变化。 [参考:44]

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