SVOM任务上的微通道x射线望远镜的光谱性能

IF 2.7 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
B. Schneider, N. Renault-Tinacci, D. Götz, A. Meuris, P. Ferrando, V. Burwitz, E. Doumayrou, T. Lavanant, N. Meidinger, K. Mercier
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引用次数: 1

摘要

微通道x射线望远镜(MXT)是SVOM天文任务上的一种创新的紧凑型x射线仪器,专门用于研究伽马射线暴等瞬态现象。在3周的时间里,我们在Panter x射线测试设备上测试了MXT飞行模型,测试条件是MXT将在飞行中经历的标称温度和真空条件。我们收集了一系列特征能量,探测了整个MXT能量范围,从0.28 keV到9 keV,在探测器视场(FOV)内外以点扩展函数(PSF)为中心的多个源位置。我们将位置数据与视场外的PSF叠加,以获得均匀照明矩阵,并使用专用管道减少所有数据集。我们通过优化的数据处理确定了MXT的最佳光谱性能,特别是能量校准和像素低能量阈值引起的电荷共享效应。结果表明,MXT在能量分辨率(1.5 keV时为80 eV)、低能量阈值和高能量阈值以及能量校准精度(±20 eV)方面符合仪器要求。我们还确定了探测器的电荷转移效率低下(\(\sim 10^{-5}\)),并模拟了MXT在其在轨寿命期间辐照前的能量演变。最后,我们测量了能量分辨率随光子能量的变化关系。我们确定了MXT检测链的等效噪声电荷为\(4.9 \pm 0.2 \ \mathrm {e}^{-}_{\text {rms}}\),在208 K下硅中的Fano因子为0.131±0.003,与先前的工作一致。这次活动证实了MXT将能够在任务生命周期内提供有希望的科学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Spectral performance of the Microchannel X-ray Telescope on board the SVOM mission

Spectral performance of the Microchannel X-ray Telescope on board the SVOM mission

The Microchannel X-ray Telescope (MXT) is an innovative compact X-ray instrument on board the SVOM astronomical mission dedicated to the study of transient phenomena such as gamma-ray bursts. During 3 weeks, we have tested the MXT flight model at the Panter X-ray test facility under the nominal temperature and vacuum conditions that MXT will undergo in-flight. We collected data at series of characteristic energies probing the entire MXT energy range, from 0.28 keV up to 9 keV, for multiple source positions with the center of the point spread function (PSF) inside and outside the detector field of view (FOV). We stacked the data of the positions with the PSF outside the FOV to obtain a uniformly illuminated matrix and reduced all data sets using a dedicated pipeline. We determined the best spectral performance of MXT using an optimized data processing, especially for the energy calibration and the charge sharing effect induced by the pixel low energy thresholding. Our results demonstrate that MXT is compliant with the instrument requirement regarding the energy resolution (< 80 eV at 1.5 keV), the low and high energy threshold, and the accuracy of the energy calibration (± 20 eV). We also determined the charge transfer inefficiency (\(\sim 10^{-5}\)) of the detector and modeled its evolution with energy prior to the irradiation that MXT will undergo during its in-orbit lifetime. Finally, we measured the relation of the energy resolution as function of the photon energy. We determined an equivalent noise charge of \(4.9 \pm 0.2 \ \mathrm {e}^{-}_{\text {rms}}\) for the MXT detection chain and a Fano factor of 0.131 ± 0.003 in silicon at 208 K, in agreement with previous works. This campaign confirmed the promising scientific performance that MXT will be able to deliver during the mission lifetime.

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来源期刊
Experimental Astronomy
Experimental Astronomy 地学天文-天文与天体物理
CiteScore
5.30
自引率
3.30%
发文量
57
审稿时长
6-12 weeks
期刊介绍: Many new instruments for observing astronomical objects at a variety of wavelengths have been and are continually being developed. Furthermore, a vast amount of effort is being put into the development of new techniques for data analysis in order to cope with great streams of data collected by these instruments. Experimental Astronomy acts as a medium for the publication of papers of contemporary scientific interest on astrophysical instrumentation and methods necessary for the conduct of astronomy at all wavelength fields. Experimental Astronomy publishes full-length articles, research letters and reviews on developments in detection techniques, instruments, and data analysis and image processing techniques. Occasional special issues are published, giving an in-depth presentation of the instrumentation and/or analysis connected with specific projects, such as satellite experiments or ground-based telescopes, or of specialized techniques.
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