论文标题

NGC 1068的AGN驱动的冷气流以解离敏感分子为特征

AGN-driven Cold Gas Outflow of NGC 1068 Characterized by Dissociation-Sensitive Molecules

论文作者

Saito, Toshiki, Takano, Shuro, Harada, Nanase, Nakajima, Taku, Schinnerer, Eva, Liu, Daizhong, Taniguchi, Akio, Izumi, Takuma, Watanabe, Yumi, Bamba, Kazuharu, Kohno, Kotaro, Nishimura, Yuri, Stuber, Sophia, Tosaki, Tomoka

论文摘要

(亚)毫米设施的最新发展已大大改变了从外层次光谱扫描中获得的信息量。在本文中,我们介绍了一种使用主组件分析(PCA)(PCA)的特征提取技术(PCA),用于附近2型Seyfert Galaxy,NGC 1068,使用ATACAMA大型毫米/submillimeter Aray的Band 3。我们将PCA应用于16个经过验证的分子线强度图,该图被卷积为150 PC分辨率。此外,我们还包括[SIII]/[SII]线比和[CI] $^3p_1 $ - $ - $^3P_0 $地图,其文献中的两种分布都与来自Central Agn的KPC规模的Biconical流出相似。我们确定了两个突出的特征:(1)环核磁盘(CND)的中心浓度和(2)横跨中心的两个峰与两种峰值相吻合。 CND中的浓缩分子线大多是高旋转分子(例如,H $^{13} $ CN,HC $ _3 $ N和HCN)。在辐照的星际培养基,CN,C $ _2 $ H和HNC中,已知分子的线排放显示出相似的浓度和沿双基菌的扩展成分,这表明分子解离是该银河系冷分子流出的主要化学化学效果。尽管应该进一步调查,但这种情况与CO同位素,Ch $ _3 $ oh和N $ _2 $ H $^+$的淡淡或缺失相一致,在流出中,它们很容易被分离的光子和电子销售。

Recent developments in (sub-)millimeter facilities have drastically changed the amount of information obtained from extragalactic spectral scans. In this paper, we present a feature extraction technique using principal component analysis (PCA) applied to arcsecond-resolution (1.0-2.0 arcsec = 72-144 pc) spectral scan datasets for the nearby type-2 Seyfert galaxy, NGC 1068, using Band 3 of the Atacama Large Millimeter/submillimeter Array. We apply PCA to 16 well-detected molecular line intensity maps convolved to a common 150 pc resolution. In addition, we include the [SIII]/[SII] line ratio and [CI] $^3P_1$-$^3P_0$ maps in the literature, both of whose distributions show remarkable resemblance with that of a kpc-scale biconical outflow from the central AGN. We identify two prominent features: (1) central concentration at the circumnuclear disk (CND) and (2) two peaks across the center that coincide with the biconical outflow peaks. The concentrated molecular lines in the CND are mostly high-dipole molecules (e.g., H$^{13}$CN, HC$_3$N, and HCN). Line emissions from molecules known to be enhanced in irradiated interstellar medium, CN, C$_2$H, and HNC, show similar concentrations and extended components along the bicone, suggesting that molecule dissociation is a dominant chemical effect of the cold molecular outflow of this galaxy. Although further investigation should be made, this scenario is consistent with the faintness or absence of the emission lines from CO isotopologues, CH$_3$OH, and N$_2$H$^+$, in the outflow, which are easily destroyed by dissociating photons and electrons.

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