论文标题

IAXO的高分辨率:基于MMC的X射线检测器

High-resolution for IAXO: MMC-based X-ray Detectors

论文作者

Unger, D., Abeln, A., Enss, C., Fleischmann, A., Hengstler, D., Kempf, S., Gastaldo, L.

论文摘要

如计划的国际轴测天文台(IAXO)等轴突播出器,从太阳中搜索轴和轴状颗粒(阿尔卑斯山)的证据。强磁场用于通过通用ALP-Photon耦合将ALP转换为光子。为了观察所得的光子,需要低背景和高效率的X射线检测器。此外,良好的能量分辨率和低能阈值将通过研究X射线频谱在发现后通过研究ALP的性质。我们建议使用低温金属磁热量计(MMC)。在这里,我们介绍了基于用于IAXO的MMC的第一个检测器系统,并讨论了表征的结果。该检测器由二维64像素阵列组成,该阵列覆盖16毫米$^2 $,填充系数为93%。我们达到平均能量分辨率为6.1 eV FWHM,允许低于100 eV的能量阈值。该检测器是朝着与Iaxo X射线光学元件相匹配的较大1 cm $^2 $阵列的第一步。我们确定在1 KEV和10 KEV之间的未屏蔽检测器系统的背景速率为$ 3.2(1)\ times 10^{ - 4} $ kev $^{ - 1} $ cm $^{ - 2} $ s $ s $ s $^{ - 1} $从30天内获得的事件获得。将来,主动和被动盾牌将大大降低宇宙兆兆和自然放射性引起的背景。我们的结果表明,MMC是射旋镜发现和研究阿尔卑斯山的一种有前途的技术。

Axion helioscopes like the planned International Axion Observatory (IAXO) search for evidence of axions and axion-like particles (ALPs) from the Sun. A strong magnetic field is used to convert ALPs into photons via the generic ALP-photon coupling. To observe the resulting photons, X-ray detectors with low background and high efficiency are necessary. In addition, good energy resolution and low energy threshold would allow for investigating the ALP properties by studying the X-ray spectrum after its discovery. We propose to use low temperature metallic magnetic calorimeters (MMCs). Here we present the first detector system based on MMCs developed for IAXO and discuss the results of the characterization. The detector consists of a two-dimensional 64-pixel array covering an active area of 16 mm$^2$ with a fill factor of 93 %. We achieve an average energy resolution of 6.1 eV FWHM allowing for energy thresholds below 100 eV. This detector is the first step towards a larger 1 cm$^2$ array matching the IAXO X-ray optics. We determine the background rate for an unshielded detector system in the energy range between 1 keV and 10 keV to be $3.2(1) \times 10^{-4}$ keV$^{-1}$ cm$^{-2}$ s$^{-1}$ from events acquired over 30 days. In the future, active and passive shields will significantly reduce the background induced by cosmic muons and natural radioactivity. Our results demonstrate that MMCs are a promising technology for helioscopes to discover and study ALPs.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源