We report on the first observation of a radio-quiet active galactic nucleus (AGN) in polarized X-rays: the Seyfert 1.9 galaxy MCG-05-23-16. This source was pointed at with the Imaging X-ray Polarimetry Explorer (IXPE) starting on 2022 May 14 for a net observing time of 486 ks, simultaneously with XMM-Newton (58 ks) and NuSTAR (83 ks). A polarization degree pi smaller than 4.7 per cent (at the 99 per cent confidence level) is derived in the 2-8 keV energy range, where emission is dominated by the primary component ascribed to the hot corona. The broad-band spectrum, inferred from a simultaneous fit to the IXPE, NuSTAR, and XMM-Newton data, is well reproduced by a power law with photon index Gamma = 1.85 +/- 0.01 and a high-energy cutoff E-C = 120 +/- 15 keV. A comparison with Monte Carlo simulations shows that a lamp-post and a conical geometry of the corona are consistent with the observed upper limit, a slab geometry is allowed only if the inclination angle of the system is less than 50 degrees.

Polarization constraints on the X-ray corona in Seyfert Galaxies: MCG-05-23-16

L Baldini;A Manfreda;
2022-01-01

Abstract

We report on the first observation of a radio-quiet active galactic nucleus (AGN) in polarized X-rays: the Seyfert 1.9 galaxy MCG-05-23-16. This source was pointed at with the Imaging X-ray Polarimetry Explorer (IXPE) starting on 2022 May 14 for a net observing time of 486 ks, simultaneously with XMM-Newton (58 ks) and NuSTAR (83 ks). A polarization degree pi smaller than 4.7 per cent (at the 99 per cent confidence level) is derived in the 2-8 keV energy range, where emission is dominated by the primary component ascribed to the hot corona. The broad-band spectrum, inferred from a simultaneous fit to the IXPE, NuSTAR, and XMM-Newton data, is well reproduced by a power law with photon index Gamma = 1.85 +/- 0.01 and a high-energy cutoff E-C = 120 +/- 15 keV. A comparison with Monte Carlo simulations shows that a lamp-post and a conical geometry of the corona are consistent with the observed upper limit, a slab geometry is allowed only if the inclination angle of the system is less than 50 degrees.
2022
Marinucci, A; Muleri, F; Dovciak, M; Bianchi, S; Marin, F; Matt, G; Ursini, F; Middei, R; L Marshall, H; Baldini, L; Barnouin, T; Cavero Rodriguez, N; De??rosa, A; Di??gesu, L; Harper, D; Ingram, A; Karas, V; Krawczynski, H; Madejski, G; Panagiotou, C; O Petrucci, P; Podgorny, J; Puccetti, S; Tombesi, F; Veledina, A; Zhang, W; Agudo, I; A Antonelli, L; Bachetti, M; H Baumgartner, W; Bellazzini, R; D Bongiorno, S; Bonino, R; Brez, A; Bucciantini, N; Capitanio, F; Castellano, S; Cavazzuti, E; Ciprini, S; Costa, E; Del??monte, E; Di??lalla, N; Di??marco, A; Donnarumma, I; Doroshenko, V; R Ehlert, S; Enoto, T; Evangelista, Y; Fabiani, S; Ferrazzoli, R; A Garcia, J; Gunji, S; Hayashida, K; Heyl, J; Iwakiri, W; G Jorstad, S; Kitaguchi, T; J Kolodziejczak, J; La??monaca, F; Latronico, L; Liodakis, I; Maldera, S; Manfreda, A; P Marscher, A; Mitsuishi, I; Mizuno, T; Ng, C-Y; L O???Dell, S; Omodei, N; Oppedisano, C; Papitto, A; G Pavlov, G; L Peirson, A; Perri, M; Pesce-Rollins, M; Pilia, M; Possenti, A; Poutanen, J; D Ramsey, B; Rankin, J; Ratheesh, A; W Romani, R; Sgr??, C; Slane, P; Soffitta, P; Spandre, G; Tamagawa, T; Tavecchio, F; Taverna, R; Tawara, Y; F Tennant, A; E Thomas, N; Trois, A; S Tsygankov, S; Turolla, R; Vink, J; C Weisskopf, M; Wu, K; Xie, F; Zane, S
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11568/1161075
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