论文标题
活性星系中的化学丰度
Chemical Abundances in Active Galaxies
论文作者
论文摘要
斯隆数字天空调查(SDSS)已被证明是理解当地宇宙中星系星系的物理特性和化学成分的强大资源。活性银河核(AGN)的SDSS种群仍然尚未以这种能力探索。为了将SDSS中的\ ion {H} {II}区域的严格研究扩展到AGN,我们适应了计算直接方法化学丰度以应用于AGN的窄线区域(NLR)的方法。通过考虑三重离子的氧气,我们能够更彻底地估计总氧丰度。我们发现由于金属碰撞冷却而引起的电子温度与氧丰度之间存在很强的相关性。此外,我们发现AGN中的氮和氧丰度密切相关。从金属温度的关系以及氮和氧丰度的耦合中,我们开发了一种新的,经验和物理动机的方法,用于从通量比率诊断图(BPT图)中通常使用的强发射线确定化学丰度(BPT图)。我们的方法(对于AGN)基于BPT线比将单个方程式降低到单个方程式,始终在1.5 dex范围内恢复直接方法丰度,而RMS不确定性为0.18 DEX。我们已经确定了SDS中数千个AGN的金属度,并在此过程中发现了Seyfert和Liner Galaxies的电离相关鉴别剂。
The Sloan Digital Sky Survey (SDSS) has proved to be a powerful resource for understanding the physical properties and chemical composition of star-forming galaxies in the local universe. The SDSS population of active galactic nuclei (AGN) remains as of yet less explored in this capacity. To extend the rigorous study of \ion{H}{ii} regions in the SDSS to AGN, we adapt methods for computing direct-method chemical abundances for application to the narrow-line regions (NLR) of AGN. By accounting for triply-ionized oxygen, we are able to more completely estimate the total oxygen abundance. We find a strong correlation between electron temperature and oxygen abundance due to collisional cooling by metals. Furthermore, we find that nitrogen and oxygen abundances in AGN are strongly correlated. From the metal-temperature relation and the coupling of nitrogen and oxygen abundances, we develop a new, empirically and physically motivated method for determining chemical abundances from the strong emission lines commonly employed in flux-ratio diagnostic diagrams (BPT diagrams). Our approach, which for AGN reduces to a single equation based on the BPT line ratios, consistently recovers direct-method abundances over a 1.5 dex range in oxygen abundance with an rms uncertainty of 0.18 dex. We have determined metallicities for thousands of AGN in the SDSS, and in the process have discovered an ionization-related discriminator for Seyfert and LINER galaxies.