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Calibration of the ART-XC mirror modules at MSFC

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arxiv 1708.09783 v1 pith:7RQKVJ3O submitted 2017-08-31 astro-ph.IM

classification astro-ph.IM
keywords art-xcmirrormodulesx-rayangularflightmsfcseven
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The Astronomical Roentgen Telescope X-ray Concentrator (ART-XC) is a hard X-ray telescope with energy response up to 30 keV, to be launched on board the Spectrum Roentgen Gamma (SRG) spacecraft in 2018. ART-XC consists of seven identical co-aligned mirror modules. Each mirror assembly is coupled with a CdTe double-sided strip (DSS) focal-plane detector. Eight X-ray mirror modules (seven flight and one spare units) for ART-XC were developed and fabricated at the Marshall Space Flight Center (MSFC), NASA, USA. We present results of testing procedures performed with an X-ray beam facility at MSFC to calibrate the point spread function (PSF) of the mirror modules. The shape of the PSF was measured with a high-resolution CCD camera installed in the focal plane with defocusing of 7 mm, as required by the ART-XC design. For each module, we performed a parametrization of the PSF at various angular distances Theta. We used a King function to approximate the radial profile of the near on-axis PSF (Theta<9 arcmin) and an ellipse fitting procedure to describe the morphology of the far off-axis angular response (9<Theta<24 arcmin). We found a good agreement between the seven ART-XC flight mirror modules at the level of 10%. The on-axis angular resolution of the ART-XC optics varies between 27 and 33 arcsec (half-power diameter), except for the spare module.

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  1. Inflight calibration of SRG/ART-XC point spread function at large off-axis angles

    astro-ph.IM 2025-05 conditional novelty 6.0 of 10

    ART-XC's in-flight slewing PSF at large off-axis angles matches MSFC ground calibration and is parametrized as a function of energy.

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