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Vector and fermion fields on a bouncing brane with a decreasing warp factor in a string-like defect

机译:在弦状缺陷中具有减小的翘曲因子的弹跳麸上的向量场和费米子场

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In a recent work, a model has been proposed where a brane is made of a scalar field with bounce-type configurations and embedded in a bulk with a string-like metric. This model produces an AdS scenario where the components of the energy–momentum tensor are finite and have its positivity ensured by a suitable choice of the bounce configurations. In the present work, we study the issue of gauge and fermion field localization in this scenario. In contrast with the five-dimensional case here the gauge field is localized without the dilaton contribution. Nevertheless, it is remarkable that the localization of the fermion field depends on the introduction of a minimal coupling with the angular component of the gauge field, which differs clearly from five-dimensional scenarios. Furthermore, we perform a qualitative analysis of the fermionic massive modes and conclude that only left-handed fermions could be localized in the brane.
机译:在最近的工作中,已经提出了一种模型,其中由具有弹跳型构造的标量场制成并以字符串状量度嵌入大块中。这个模型产生一个ADS场景,其中张量是有限的,并且具有能量 - 动量的组分其阳性确保由弹跳配置的合适的选择。在当前的工作中,我们研究在这种情况下的规范和费米子场本地化的问题。与五维情况相反,此处的标距场是局部分布的,没有dilaton贡献。然而,值得注意的是,费米子场的定位取决于引入与规范场的角分量的最小耦​​合,这与五维情形明显不同。此外,我们对费米离子块状模式进行了定性分析,并得出结论,只有左手费米子可以定位在米糠中。

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