One of the instruments on the Advanced Telescope for High-Energy Astrophysics (Athena) which was one of the three missions under study as one of the L-class missions of ESA, is the X-ray Microcalorimeter Spectrometer (XMS). This instrument, which will provide high-spectral resolution images, is based on X-ray micro-calorimeters with Transition Edge Sensor (TES) and absorbers that consist of metal and semi-metal layers and a multiplexed SQUID readout. The array (32 x 32 pixels) provides an energy resolution of < 3 eV. Due to the large collection area of the Athena optics, the XMS instrument must be capable of processing high counting rates, while maintaining the spectral resolution and a low deadtime. In addition, an anti-coincidence detector is required to suppress the particle-induced background. Compared to the requirements for the same instrument on IXO, the performance requirements have been relaxed to fit into the much more restricted boundary conditions of Athena. In this paper we illustrate some of the science achievable with the instrument. We describe the results of design studies for the focal plane assembly and the cooling systems. Also, the system and its required spacecraft resources will be given.

den Herder, J., Bagnali, D., Bandler, S., Barbera, M., Barcons, X., Barret, D., et al. (2012). The x-ray microcalorimeter spectrometer onboard Athena. In Proceedings of the SPIE, Volume 8443, article id. 84432B, 12 pp. (2012) (pp.84432B-1-84432B-12) [10.1117/12.924269].

The x-ray microcalorimeter spectrometer onboard Athena

BARBERA, Marco;
2012-01-01

Abstract

One of the instruments on the Advanced Telescope for High-Energy Astrophysics (Athena) which was one of the three missions under study as one of the L-class missions of ESA, is the X-ray Microcalorimeter Spectrometer (XMS). This instrument, which will provide high-spectral resolution images, is based on X-ray micro-calorimeters with Transition Edge Sensor (TES) and absorbers that consist of metal and semi-metal layers and a multiplexed SQUID readout. The array (32 x 32 pixels) provides an energy resolution of < 3 eV. Due to the large collection area of the Athena optics, the XMS instrument must be capable of processing high counting rates, while maintaining the spectral resolution and a low deadtime. In addition, an anti-coincidence detector is required to suppress the particle-induced background. Compared to the requirements for the same instrument on IXO, the performance requirements have been relaxed to fit into the much more restricted boundary conditions of Athena. In this paper we illustrate some of the science achievable with the instrument. We describe the results of design studies for the focal plane assembly and the cooling systems. Also, the system and its required spacecraft resources will be given.
Settore FIS/05 - Astronomia E Astrofisica
Space Telescopes and Instrumentation 2012: Ultraviolet to Gamma Ray
2012
12
den Herder, J., Bagnali, D., Bandler, S., Barbera, M., Barcons, X., Barret, D., et al. (2012). The x-ray microcalorimeter spectrometer onboard Athena. In Proceedings of the SPIE, Volume 8443, article id. 84432B, 12 pp. (2012) (pp.84432B-1-84432B-12) [10.1117/12.924269].
Proceedings (atti dei congressi)
den Herder, J.; Bagnali, D.; Bandler, S.; Barbera, M.; Barcons, X.; Barret, D.; Bastia, P.; Bisotti, M.; Boyce, K.; Cara, C.; Ceballos, M.; Corcione, L.; Cobo, B.; Colasanti, L.; de Plaa, J.; Dipirro, M.; Doriese, W.; Ezoe, Y.; Fujimoto, R.; Gatti, F.; Gottardi, L.; Guttridge, P.; den Hartog, R.; Hepburn, I.; Kelley, R.; Irwin, K.; Ishisaki, Y.; Kilbourne, C.; de Korte, P.; van der Kuur, J.; Lotti, S.; Macculi, C.; Mitsuda, K.; Mineo, T.; Natalucci, L.; Ohashi, T.; Page, M.; Paltani, S.; Perinati, E.; Piro, L.; Pigot, C.; Porter, F.; Rauw, G.; Ravera, L.; Renotte, E.; Sauvageot, J.; Schmid, C.; Sciortino, S.; Shirron, P.; Takei, Y.; Torrioli, G.; Tsujimoto, M.; Valenziano, L.; Willingale, D.; de Vries, C.; van Weers, H.; Wilms, J.; Yamasaki, N.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/76172
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