论文标题
MADMAX介电吊带板的主要助推器设置的第一个证明
A first proof of principle booster setup for the MADMAX dielectric haloscope
论文作者
论文摘要
轴和轴突状颗粒是出色的低质量暗物质候选者。 MADMAX实验旨在直接检测出质量在$ 40 \,μ{\ rm eV} $之间的银河轴和$ 400 \,μ{\ rm ev} $,通过使用轴诱导的电磁波在强度强磁性领域的不同材料之间使用轴诱导的电磁波发射。结合了许多这样的表面,可以使用建设性干扰和共振可以显着增强这种发射(增强)。我们提供了由铜镜和多达五个蓝宝石磁盘组成的这种助推系统的原理实现的第一个证明。通过反射率测量研究了系统的电磁响应。研究了磁盘放置磁盘的机械精度,不需要反射的校准过程以及基本调谐算法的重复性。我们发现,在介绍的情况下,在我们的设置中,通过一维计算预测的群延迟来实现电磁响应。调整的可重复性在百分比水平上,并且会对这种助推器的灵敏度产生较小的影响。
Axions and axion-like particles are excellent low-mass dark matter candidates. The MADMAX experiment aims to directly detect galactic axions with masses between $40\,μ{\rm eV}$ and $400\,μ{\rm eV}$ by using the axion-induced emission of electromagnetic waves from boundaries between materials of different dielectric constants under a strong magnetic field. Combining many such surfaces, this emission can be significantly enhanced (boosted) using constructive interference and resonances. We present a first proof of principle realization of such a booster system consisting of a copper mirror and up to five sapphire disks. The electromagnetic response of the system is investigated by reflectivity measurements. The mechanical accuracy, calibration process of unwanted reflections and the repeatability of a basic tuning algorithm to place the disks are investigated. We find that for the presented cases the electromagnetic response in terms of the group delay predicted by one-dimensional calculations is sufficiently realized in our setup. The repeatability of the tuning is at the percent level, and would have small impact on the sensitivity of such a booster.