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CIRCUMNUCLEAR STAR FORMATION IN ACTIVE GALAXIES

机译:活动星系中的环形核星形成

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We study the gas kinematics and chemical abundances in the inner regions of six galaxies with active galactic nuclei. The galaxies were selected for having star-forming regions in rings or spirals within a few kiloparsecs of the nucleus. The goal of the project is to search for any connections between the gas-dynamics, the chemical abundances, and the nuclear activity. Narrowband images have been obtained to map out the ionized gas. Medium-dispersion long-slit spectroscopy at several positions over the nuclear region has been used to obtain the gaseous velocity field and distribution of excitation. The H II regions in the rings are located near the turnover point of the rotation curves, suggesting association with the inner Lindblad resonance. The nuclear ring in the LINER NGC 1326 may be located between the two inner Lindblad resonances, and the inner rings in the Seyfert 2 galaxy NGC 3081 and the LINER/ Seyfert 1 NGC 7213 may be associated with the Ω — k/4 resonance. A warm ionized medium (WIM) is found to pervade the inner region in all galaxies. There is a correlation between the [N II]/Hα and [S II]/ Hα ratios and the FWHM of the [N II] λ6584 emission line in this WIM, indicating that shocks contribute to the ionization of the gas. We show that contamination by this diffuse emission increases the measured [N II]/Hα and [S II]/Hα ratios at H II regions close to the nuclei and thus may account, in part, for the systematically higher [N II]/Hα and [S II]/Hα found in the present work and by previous authors for near-nuclear H II regions compared with H II regions farther out in the disk of the galaxy. In the present paper, we correct for this contamination by interpolating the contribution of the WIM at the H II regions and subtracting it off. Oxygen and nitrogen abundances are obtained for 18 H II regions and are extrapolated to obtain the abundance of the nuclear gas, which is found to range from solar to 2 times solar for oxygen and from 2 to 4 times solar for nitrogen. Such values are similar to those observed in nonactive galaxies with the same luminosity and morphological type and do not support the idea that the central regions of active galaxies have undergone unusual chemical processing.
机译:我们研究了具有活跃银河核的六个星系内部区域的气体运动学和化学丰度。选择这些星系是为了在核的几千帕秒内以成环或螺旋状形成恒星形成区域。该项目的目标是寻找气体动力学,化学丰度和核活动之间的任何联系。已获得窄带图像以绘制出电离气体。已使用核区域上几个位置的中散度长缝光谱学来获得气体速度场和激发分布。环中的H II区位于旋转曲线的转换点附近,表明与内部Lindblad共振相关。 LINER NGC 1326中的核环可位于两个内部Lindblad共振之间,Seyfert 2星系NGC 3081和LINER / Seyfert 1 NGC 7213中的内环可与Ω_k/ 4共振相关。发现温暖的电离介质(WIM)遍布所有星系的内部区域。在此WIM中[N II] /Hα和[S II] /Hα比与[N II]λ6584发射谱线的FWHM之间存在相关性,这表明冲击有助于气体的电离。我们表明,这种弥散发射造成的污染会增加在靠近原子核的H II区域测得的[N II] /Hα和[S II] /Hα比,因此可能部分解释了系统性较高的[N II] /在本工作中和以前的作者发现的Hα和[S II] /Hα与近星系圆盘中较远的H II区相比,属于近核H II区。在本文中,我们通过在W II区域内插值WIM的贡献并将其减去来校正这种污染。获得了18个H II区域的氧气和氮气丰度,并对其进行推断以获得核气体的丰度,发现该核气体的丰度范围是太阳能的2倍至氧气的2倍,氮气的2至4倍。这样的值类似于在具有相同发光度和形态类型的非活动星系中观察到的值,并且不支持活动星系的中心区域已经历了不寻常的化学处理的想法。

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