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DYNAMICS OF MATTER IN A COMPACTIFIED KALUZA—KLEIN MODEL

机译:复杂的Kaluza-Klein模型中的物质动力学

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摘要

A long-standing problem in Kaluza–Klein models is the description of matter dynamics. Within the 5D model, the dimensional reduction of the geodesic motion for a 5D free test particle formally restores electrodynamics, but the reduced 4D particle shows a charge–mass ratio that is upper-bounded, such that it cannot fit in with any kind of elementary particle. At the same time, from the quantum dynamics viewpoint, there is the problem of the generation of huge massive modes. We present a criticism against the 5D geodesic approach and face the hypothesis that in Kaluza–Klein space the geodesic motion does not deal with the real dynamics of the test particle. We propose a new approach: starting from the conservation equation for the 5D matter tensor, within the Papapetrou multipole expansion, we prove that the 5D dynamical equation differs from the 5D geodesic one. Our new equation provides right coupling terms without bounding and in such a scheme the tower of massive modes is removed.
机译:Kaluza-Klein模型中的一个长期存在的问题是物质动力学的描述。在5D模型中,5D自由测试粒子的测地线运动的尺寸减小正式恢复了电动力学,但是减小的4D粒子显示出较高的电荷质量比,因此它无法与任何基本元素配合粒子。同时,从量子动力学的观点来看,存在产生巨大质量模式的问题。我们对5D测地线方法提出了批评,并面临这样一种假设:在Kaluza-Klein空间中,测地线运动不能处理测试粒子的真实动力学。我们提出了一种新方法:从Papapetrou多极展开内的5D物质张量的守恒方程出发,我们证明5D动力学方程不同于5D测地方程。我们的新方程式提供了无界的正确耦合项,在这种方案中,消除了大规模模态的塔。

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