论文标题
使用谐振腔中隐藏光子检测的敏感性提高
Sensitivity improvement in hidden photon detection using resonant cavities
论文作者
论文摘要
类似于针对轴突样粒子搜索提出的光闪亮的壁壁设置,已经考虑了一对谐振腔,以搜索一个额外的U(1)巨大的量表,称为隐藏的光子,该型号介导了隐藏扇区中的相互作用。我们提出了一种新的空腔构型,该腔构型由一个被空心圆柱探测器包围的圆柱发射器组成,以显着提高对$ $ $ $ eV质量范围内隐藏光子信号的实验敏感性。进行了一项广泛的研究,以找到最佳的空腔几何形状和共振模式,从而产生最佳性能。此外,还探索了超导RF技术的可行应用。我们发现,这些电位改进的整合将增强对隐藏光子和标准模型光子之间通过多个数量级之间有效动力学混合参数的敏感性。
Analogous to the light-shining-through-wall setup proposed for axion-like particle searches, a pair of resonant cavities have been considered to search for an extra U(1) massive gauge boson, called a hidden photon, which mediates the interactions in the hidden sector. We propose a new cavity configuration, consisting of a cylindrical emitter surrounded by a hollow cylindrical detector to remarkably improve experimental sensitivity to hidden photon signals in the $μ$eV mass range. An extensive study was conducted to find the optimal cavity geometry and resonant mode, which yields the best performance. In addition, a feasible application of superconducting RF technology was explored. We found the integration of these potential improvements will enhance the sensitivity to the effective kinetic mixing parameter between the hidden photon and the Standard Model photon by multiple orders of magnitude.