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Toward the stabilization of extra dimensions by brane dynamics

机译:通过臂动力学实现额外尺寸的稳定

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摘要

All the models of elementary particles and their interactions derived from String Theory involve a compact six-dimensional internal space. Its volume and shape should be fixed or stabilized, since otherwise massless scalar fields (moduli) reflecting their deformations appear in our four-dimensional space-time, with sizable effects on known particles and fields. We propose a strategy toward stabilizing the compact space without fluxes of three-form fields from closed strings. Our main motivation and goal is to proceed insofar as possible within conventional string worldsheet theory. As we shall see, D-branes with magnetic flux ("magnetized D-branes") and the forces between them can be used to this end. We investigate here some necessary ingredients: open string one-loop vacuum amplitudes between magnetized D-branes, magnetized D-branes fixed at orbifold singularities, and potential energies among such D-branes in the compact space that result from tree-level closed string exchanges.
机译:从弦论导出的所有基本粒子模型及其相互作用都涉及一个紧凑的六维内部空间。它的体积和形状应该是固定的或稳定的,因为否则,反映它们变形的无质量标量场(模量)会出现在我们的二维时空中,并对已知粒子和场产生可观的影响。我们提出了一种稳定紧凑空间的策略,该策略不需要封闭弦的三态场的通量。我们的主要动机和目标是在常规弦乐世界理论中尽可能地进行。正如我们将看到的那样,具有磁通量的D形金属(“磁化D形金属”)及其之间的作用力可以用于此目的。我们在这里研究一些必要的成分:磁化的D谱带之间的开弦单环真空振幅,固定在球奇点处的磁化的D谱带以及在紧凑空间中此类D谱带之间的势能,这是由树级闭合弦交换引起的。

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