Ground Calibration Result of the Wide-field X-ray Telescope (WXT) onboard the Einstein Probe
Huaqing Cheng, Chen Zhang, Zhixing Ling, Xiaojin Sun, Shengli Sun, Yuan Liu, Yanfeng Dai, Zhenqing Jia, Haiwu Pan, Wenxin Wang, Donghua Zhao, Yifan Chen, Zhiwei Cheng, Wei Fu, Yixiao Han, Junfei Li, Zhengda Li, Xiaohao Ma, Yulong Xue, Ailiang Yan, Qiang Zhang, Yusa Wang

TL;DR
This paper details the on-ground calibration of the Wide-field X-ray Telescope (WXT) on the Einstein Probe, demonstrating its performance and alignment with theoretical models before launch.
Contribution
It provides comprehensive calibration results of the WXT modules, including PSF, effective area, and energy response, with improvements over previous instruments and validation against simulations.
Findings
Uniform PSF and effective area across the FoV
Energy dependence matches theoretical predictions
Improved spatial resolution over previous Lobster Eye Imager
Abstract
We report on results of the on-ground X-ray calibration of the Wide-field X-ray Telescope (WXT) built from novel lobster-eye micro-pore optics, onboard the Einstein Probe (EP) satellite. To fully characterize the instrumental performance and properties, a series of tests and calibrations have been carried out at different levels of devices, assemblies and the complete module before the launch of EP. In this paper, we present the calibration results of three flight model modules (FM1, FM5 and FM11) obtained during their end-to-end module calibration experiments carried out at the 100-m X-ray Test Facility (100XF) of IHEP, CAS. Measurements of the Point Spread Function (PSF), effective area, and energy response were performed for multiple incident directions and several characteristic X-ray emission line energies. Specifically, the distributions of the PSF and effective areas are found to…
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Taxonomy
TopicsStatistical and numerical algorithms · Astrophysical Phenomena and Observations · Particle Detector Development and Performance
