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Soffitta, P., Bucciantini, N., Churazov, E., Costa, E., Dovciak, M., Feng, H., . . . Zane, S. (2021). A polarized view of the hot and violent universe. Experimental astronomy, 51(3), 1109-1141
Open this publication in new window or tab >>A polarized view of the hot and violent universe
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2021 (English)In: Experimental astronomy, ISSN 0922-6435, E-ISSN 1572-9508, Vol. 51, no 3, p. 1109-1141Article in journal (Refereed) Published
Abstract [en]

X-ray polarimetry has long been considered the 'holy grail' of X-ray astronomy. Fortunately, after a silence of more than 40 years, the field is now rejuvenating. In fact, an X-ray polarimeter onboard a Cube-sat nano-satellite has been recently successfully operated. IXPE, the Imaging X-ray Polarimetry Explorer, will be launched in 2021 while eXTP, containing a larger version of IXPE, is expected to be launched in 2027. Although at present it is difficult to predict the discoveries that, given their exploratory nature, IXPE and eXTP will obtain, the path for a follow-up mission can already be envisaged. In this paper we describe the scientific goals of such a follow-up mission, and present a medium-size mission profile that can accomplish this task.

Keywords
Astrophysics, X-rays, Polarimetry
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-195180 (URN)10.1007/s10686-021-09722-y (DOI)000648846100002 ()
Available from: 2021-08-10 Created: 2021-08-10 Last updated: 2024-01-17Bibliographically approved
De Angelis, A., Tatischeff, V., Grenier, I. A., McEnery, J., Mallamaci, M., Tavani, M., . . . Zoglauer, A. (2018). Science with e-ASTROGAM A space mission for MeV-GeV gamma-ray astrophysics. Journal of High Energy Astrophysics, 19, 1-106
Open this publication in new window or tab >>Science with e-ASTROGAM A space mission for MeV-GeV gamma-ray astrophysics
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2018 (English)In: Journal of High Energy Astrophysics, ISSN 2214-4048, E-ISSN 2214-4056, Vol. 19, p. 1-106Article in journal (Refereed) Published
Abstract [en]

e-ASTROGAM ('enhanced ASTROGAM') is a breakthrough Observatory space mission, with a detector composed by a Silicon tracker, a calorimeter, and an anticoincidence system, dedicated to the study of the non-thermal Universe in the photon energy range from 0.3 MeV to 3 GeV - the lower energy limit can be pushed to energies as low as 150 keV for the tracker, and to 30 keV for calorimetric detection. The mission is based on an advanced space-proven detector technology, with unprecedented sensitivity, angular and energy resolution, combined with polarimetric capability. Thanks to its performance in the MeV-GeV domain, substantially improving its predecessors, e-ASTROGAM will open a new window on the non-thermal Universe, making pioneering observations of the most powerful Galactic and extragalactic sources, elucidating the nature of their relativistic outflows and their effects on the surroundings. With a line sensitivity in the MeV energy range one to two orders of magnitude better than previous generation instruments, e-ASTROGAM will determine the origin of key isotopes fundamental for the understanding of supernova explosion and the chemical evolution of our Galaxy. The mission will provide unique data of significant interest to a broad astronomical community, complementary to powerful observatories such as LIGO-Virgo-GEO600-KAGRA, SKA, ALMA, E-ELT, TMT, LSST, JWST, Athena, CTA, IceCube, KM3NeT, and LISA.

National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-162952 (URN)10.1016/j.jheap.2018.07.001 (DOI)000449510800001 ()2-s2.0-85054709790 (Scopus ID)
Available from: 2018-12-13 Created: 2018-12-13 Last updated: 2023-01-25Bibliographically approved
Identifiers
ORCID iD: ORCID iD iconorcid.org/0000-0002-0322-884x

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