论文标题

700 ks chandra蜘蛛网领域I:原始群集中广泛的核活动的证据

The 700 ks Chandra Spiderweb Field I: evidence for widespread nuclear activity in the Protocluster

论文作者

Tozzi, P., Pentericci, L., Gilli, R., Pannella, M., Fiore, F., Miley, G., Nonino, M., Rottgering, H. J. A., Strazzullo, V., Anderson, C. S., Borgani, S., Calabro', A., Carilli, C., Dannerbauer, H., Di Mascolo, L., Feruglio, C., Gobat, R., Jin, S., Liu, A., Mroczkowski, T., Norman, C., Rasia, E., Rosati, P., Saro, A.

论文摘要

(删节)我们对在z = 2.156时对蜘蛛网银河系周围的田野的700 ks chandra acis-s观察进行了分析,重点是相关的大规模环境中的核活动。我们将未解决的X射线源识别为1.3x10^{ - 16}和3.9x10^{ - 16} erg/s/cm^2的磁通极限。我们在光学,NIR和Obsm频段中搜索对应物,以识别属于原始集群的X射线源。我们检测到J1140-2629的5个Arcmin(对应于2.5 mpc)内的107 X射线未解决的源,其中13个具有光谱红移2.11 <z <2.20和1源具有光度为与此范围一致的光源。我们的X射线光谱分析表明,它们的固有光谱斜率与平均<γ>〜1.84+-0.04一致。 5个原始X射线构件的最佳拟合固有吸收是N_H> 10^{23} cm^{ - 2},而其他6个则具有少量x10^{22} cm^{ - 2}的上限。两个来源只能配备非常扁平的γ<= 1,因此被认为是Compton厚的候选者。它们的0.5-10 KEV REST框架光度大于2x10^{43} ERG/S,明显大于恒星形成活性预期的X射线照明。 Agn在与蜘蛛网原始群集相关的体积中的X射线光度函数在10^{43} <l_x <10^{44.5} erg/s的范围内,至少比相同的红移和明显较平淡的田地高至少10倍。在恒星质量范围log(m*/m_sun)> 10.5中测量X射线AGN分数为(25.5+-4.5)%,相对于可比较的送射和stellar质量范围的COSMOS场,对应于6.0^{+9.0} _ { - 3.0}的增强。我们得出的结论是,蜘蛛网原始群集中的星系群的特征是增强的X射线核活动是由环境对MPC量表的影响触发的。

(Abridged) We present an analysis of the 700 ks Chandra ACIS-S observation of the field around the Spiderweb Galaxy at z=2.156, focusing on the nuclear activity in the associated large-scale environment. We identify unresolved X-ray sources down to flux limits of 1.3X10^{-16} and 3.9X10^{-16} erg/s/cm^2 in the soft and hard band, respectively. We search for counterparts in the optical, NIR and submm bands to identify X-ray sources belonging to the protocluster. We detect 107 X-ray unresolved sources within 5 arcmin (corresponding to 2.5 Mpc) of J1140-2629, among which 13 have optical counterparts with spectroscopic redshift 2.11<z<2.20, and 1 source with photometric redshift consistent with this range. Our X-ray spectral analysis shows that their intrinsic spectral slope is consistent with an average <Γ>~1.84+-0.04. The best-fit intrinsic absorption for 5 protocluster X-ray members is N_H>10^{23} cm^{-2}, while other 6 have upper limits of the order of fewX10^{22} cm^{-2}. Two sources can only be fitted with very flat Γ<=1, and are therefore considered Compton-thick candidates. Their 0.5-10 keV rest frame luminosities are larger than 2X10^{43} erg/s, significantly greater than X-ray luminosities expected from star formation activity. The X-ray luminosity function of AGN in the volume associated to the Spiderweb protocluster in the range 10^{43}<L_X<10^{44.5} erg/s, is at least 10 times higher than that in the field at the same redshift and significantly flatter. The X-ray AGN fraction is measured to be (25.5+-4.5)% in the stellar mass range log(M*/M_sun)>10.5, corresponding to an enhancement of 6.0^{+9.0}_{-3.0} with respect to the COSMOS field at comparable redshifts and stellar mass range. We conclude that the galaxy population in the Spiderweb Protocluster is characterized by enhanced X-ray nuclear activity triggered by environmental effects on Mpc scales.

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