论文标题
XL-Calibur-第二代气球播放硬X射线极化任务
XL-Calibur -- a second-generation balloon-borne hard X-ray polarimetry mission
论文作者
论文摘要
XL-Calibur是一款硬X射线(15-80 KEV)极化任务,从平流层的稳定气球传播平台运行。它建立在X-Calibur任务的遗产基础上,该遗产观察到2018年12月29日至2019年1月1日之间的中子星GX 301-2。偏振仪位于抗弥补屏蔽层中,以减轻平流层中存在的颗粒的背景。镜像和偏光仪屏组的组件安装在12 m长的轻质桁架的相对端,该桁架用弧度的精度指向WASP -Wallops Arc第二指针。 XL-Calibur任务将通过使用较大的有效区域X射线镜,通过较薄的CZT探测器减少背景,并改善抗电量屏蔽层,从而实现X-Calibur的灵敏度。当观察$ t _ {\ rm day} $ day的1螃蟹源时,最小可检测的极化(在99%置信度下)为$ \ sim $ \ sim $ 2 $ \%\%\ cdot t _ {\ rm day}^{ - 1/2} $。 40 KEV的能量分辨率为$ \ sim $ 5.9 kev。本文的目的是描述XL-Calibur任务的设计和性能以及预见的科学计划。
XL-Calibur is a hard X-ray (15-80 keV) polarimetry mission operating from a stabilised balloon-borne platform in the stratosphere. It builds on heritage from the X-Calibur mission, which observed the accreting neutron star GX 301-2 from Antarctica, between December 29th 2018 and January 1st 2019. The XL-Calibur design incorporates an X-ray mirror, which focusses X-rays onto a polarimeter comprising a beryllium rod surrounded by Cadmium Zinc Telluride (CZT) detectors. The polarimeter is housed in an anticoincidence shield to mitigate background from particles present in the stratosphere. The mirror and polarimeter-shield assembly are mounted at opposite ends of a 12 m long lightweight truss, which is pointed with arcsecond precision by WASP - the Wallops Arc Second Pointer. The XL-Calibur mission will achieve a substantially improved sensitivity over X-Calibur by using a larger effective area X-ray mirror, reducing background through thinner CZT detectors, and improved anticoincidence shielding. When observing a 1 Crab source for $t_{\rm day}$ days, the Minimum Detectable Polarisation (at 99% confidence level) is $\sim$2$\%\cdot t_{\rm day}^{-1/2}$. The energy resolution at 40 keV is $\sim$5.9 keV. The aim of this paper is to describe the design and performance of the XL-Calibur mission, as well as the foreseen science programme.