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Accurate classification of 75 counterparts of objects detected in the 54 month Palermo Swift/BAT hard X-ray catalogue

Authors :
Parisi, P.
Masetti, N.
Rojas, A. F.
Jiménez-Bailón, E.
Chavushyan, V.
Palazzi, E.
Bassani, L.
Bazzano, A.
Bird, A. J.
Galaz, G.
Minniti, D.
Morelli, L.
Ubertini, P.
Parisi, P.
Masetti, N.
Rojas, A. F.
Jiménez-Bailón, E.
Chavushyan, V.
Palazzi, E.
Bassani, L.
Bazzano, A.
Bird, A. J.
Galaz, G.
Minniti, D.
Morelli, L.
Ubertini, P.
Publication Year :
2013

Abstract

Through an optical campaign performed at 4 telescopes located in the northern and the southern hemispheres, we have obtained optical spectroscopy for 75 counterparts of unclassified or poorly studied hard X-ray emitting objects detected with Swift/BAT and listed in the 54 month Palermo BAT catalogue. All these objects have also observations taken with Swift/XRT, ROSAT or Chandra satellites which allowed us to reduce the high energy error box and pinpoint the most likely optical counterpart/s. We find that 69 sources in our sample are Active Galactic Nuclei (AGNs); of them, 35 are classified as type 1 (with broad and narrow emission lines), 33 are classified as type 2 (with only narrow emission lines) and one is an high redshift QSO; the remaining 6 objects are galactic cataclysmic variables (CVs). Among type 1 AGNs, 32 are objects of intermediate Seyfert type (1.2-1.9) and one is Narrow Line Seyfert 1 galaxy; for 29 out of 35 type 1 AGNs, we have been able to estimate the central black hole mass and the Eddington ratio. Among type 2 AGNs, two display optical features typical of the LINER class, 3 are classified as transition objects, 1 is a starburst galaxy and 2 are instead X-ray bright, optically normal galaxies. All galaxies classified in this work are relatively nearby objects (0.006 - 0.213) except for one at redshift 1.137.<br />Comment: 19 pages, 5 figures, 6 tables, accepted for publications on Astronomy and Astrophysics, main journal. arXiv admin note: text overlap with arXiv:1206.5091

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1098068442
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1051.0004-6361.201322409