论文标题

可伸缩的卤素可用于轴线暗物质检测的30美元$ $ $ eV范围与RADS

Scalable haloscopes for axion dark matter detection in the 30$μ$eV range with RADES

论文作者

Melcón, A. Álvarez, Cuendis, S. Arguedas, Cogollos, C., Díaz-Morcillo, A., Döbrich, B., Gallego, J. D., Barceló, J. M. García, Gimeno, B., Golm, J., Irastorza, I. G., Lozano-Guerrero, A. J., Malbrunot, C., Millar, A., Navarro, P., Garay, C. Peña, Redondo, J., Wuensch, W.

论文摘要

RAD(RESIC AXION探测器探索性设置)是一个项目,其目标是直接在磁性偶极磁场中使用定制的微波炉过滤器,直接在$30μ$ EV量表上搜索轴线暗物质。目前,RAD在铸造实验的LHC偶极子上获取数据。从长远来看,设想RADS空腔在(婴儿)-IAXO磁铁中获取数据。在本文中,我们报告了具有优化的微波炉设计的建模,构建和表征,其交替虹膜可利用最大耦合到轴线,同时可扩展长度,而无需使用模式。我们开发了数学形式主义和理论研究,这证明了所选设计的性能。我们还指出了这种形式主义的适用性,以优化Madmax介电卤代。

RADES (Relic Axion Detector Exploratory Setup) is a project with the goal of directly searching for axion dark matter above the $30 μ$eV scale employing custom-made microwave filters in magnetic dipole fields. Currently RADES is taking data at the LHC dipole of the CAST experiment. In the long term, the RADES cavities are envisioned to take data in the (baby)-IAXO magnet. In this article we report on the modelling, building and characterisation of an optimised microwave-filter design with alternating irises that exploits maximal coupling to axions while being scalable in length without suffering from mode-mixing. We develop the mathematical formalism and theoretical study which justifies the performance of the chosen design. We also point towards the applicability of this formalism to optimise the MADMAX dielectric haloscopes.

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