Shiu Gary, Staessens Wieland, Ye Fang
Department of Physics, 1150 University Avenue, University of Wisconsin, Madison, Wisconsin 53706, USA.
Center for Fundamental Physics and Institute for Advanced Study, Hong Kong University of Science and Technology, Hong Kong.
Phys Rev Lett. 2015 Oct 30;115(18):181601. doi: 10.1103/PhysRevLett.115.181601. Epub 2015 Oct 27.
We point out that kinetic and Stückelberg mixings that are generically present in the low energy effective action of axions can significantly widen the window of axion decay constants. We show that an effective super-Planckian decay constant can be obtained even when the axion kinetic matrix has only sub-Planckian entries. Our minimal model involves only two axions, a Stückelberg U(1) and a modest rank instanton generating non-Abelian group. Below the mass of the Stückelberg U(1), there is only a single axion with a nonperturbatively generated potential. In contrast to previous approaches, the enhancement of the axion decay constant is not tied to the number of degrees of freedom introduced. We also discuss how kinetic mixings can lower the decay constant to the desired axion dark matter window. String theory embeddings of this scenario and their phenomenological features are briefly discussed.
我们指出,轴子低能有效作用中通常存在的动力学混合和施特克尔贝格混合可以显著拓宽轴子衰变常数的窗口。我们表明,即使轴子动力学矩阵只有次普朗克量级的项,也能得到一个有效的超普朗克衰变常数。我们的最简模型仅涉及两个轴子、一个施特克尔贝格U(1)以及一个产生非阿贝尔群的适度秩瞬子。在施特克尔贝格U(1)的质量以下,只有一个具有非微扰产生势的轴子。与之前的方法不同,轴子衰变常数的增强与引入的自由度数量无关。我们还讨论了动力学混合如何将衰变常数降低到所需的轴子暗物质窗口。简要讨论了该情景的弦理论嵌入及其现象学特征。