论文标题
辐射校正的kaluza-klein质量在以太紧凑型中
The radiatively corrected Kaluza-Klein masses in aether compactification
论文作者
论文摘要
我们解决了五维QED的Kaluza-Klein(KK)质量的辐射校正问题,并补充了Aether Lorentz侵入术语。具体而言,我们从一个fermion循环中计算到KK光子质量的校正。通常,KK质量由于通过紧凑型打破五维洛伦兹的不变性而进行辐射校正。如我们所示,额外的洛伦兹违反因子的存在 - 以太背景,导致这些校正的非平凡修改。该模型可能引起解决重要的现象学问题,例如辐射校正的特定模式的KK质量分裂与测量中的不确定性和/或可能的空间结构常数之间的关系。对于最新的有关精细结构常数的数据,我们在TEV量表上发现了第一个激发的Kaluza-Klein仪表孔的KK质量分裂$ \ sim 0.01 $ MEV。另一方面,大型KK模式限制显示出非常有趣的现象,显示了以太在保护较高模式免受量子校正的特殊作用。
We address the issue of radiative corrections to Kaluza-Klein (KK) masses in five-dimensional QED supplemented by aether Lorentz-violating terms. Specifically, we compute the corrections to the KK photon masses from one fermion loop. In general, the KK masses receive radiative corrections due to breaking the five-dimensional Lorentz invariance by compactification. As we show, the presence of the additional Lorentz violating factor - an aether background, leads to the non-trivial modification of these corrections. This model may be of interest in addressing important phenomenological issues such as the relation between radiative corrected KK mass splitting of a particular mode and uncertainties in the measurements and/or possible spatial variation of the fine-structure constant. For the recent data on the fine-structure constant, we find a KK mass splitting of magnitude $\sim 0.01$ MeV for the first excited Kaluza-Klein gauge boson at TeV scale. On the other hand, the large KK modes limit displays a very interesting phenomenon, showing the very special role of the aether in protecting the higher modes from the quantum corrections.