用 ALMA 观测到的最接近星爆星系 NGC 253 的 HCN 发射特性和运动学特征

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
I. Bešlić, A. T. Barnes, F. Bigiel, M. J. Jiménez-Donaire, A. Usero, J. D. Henshaw, C. Faesi, A. K. Leroy, E. Rosolowsky, J. S. den Brok, M. Chevance, C. Eibensteiner, K. Grasha, R. S. Klessen, J. M. D. Kruijssen, D. Liu, S. Meidt, J. Neumann, L. Neumann, H. Pan, J. Puschnig, M. Querejeta, E. Schinnerer, T. G. Williams
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引用次数: 0

摘要

背景。研究分子气体示踪剂,如氰化氢(HCN),以探测附近星系中比 CO 辐射更高的密度,仍然具有挑战性。这是因为以高灵敏度和高空间分辨率探测 HCN 需要大量的观测时间。尽管目前已经可以获得数十个星系的近似千帕斯卡尺度的 HCN 地图,但仍然需要更高分辨率的地图。我们的目标是研究分子气体的性质、两种探测不同密度状态的示踪剂之间的强度对比(HCN(1-0)/CO(2-1)比值)以及它们在最接近星爆星系之一的 NGC 253 中的运动学特性。阿塔卡马大型毫米波/亚毫米波阵列(ALMA)凭借其先进的功能,可以在大视野范围内以高分辨率绘制这些特征,并揭示银河系外这种高密度气体的性质。我们展示了 ALMA 阿塔卡马紧凑阵列和总功率(ACA+TP)对整个 NGC 253 的 HCN 发射的最新观测结果。观测覆盖了星系盘内部8.6′的区域,空间分辨率为300 pc。我们的研究考察了 HCN 追踪气体的分布和运动学特性,以及它与 CO(2-1) 追踪的大量分子气体之间的关系。我们分析了每条视线上 HCN 和 CO 的综合强度和平均速度。我们还使用 SCOUSE 软件进行了光谱分解,分别考虑了每个速度分量。我们发现,由 HCN 追踪到的密度较高的分子气体在半径为 2 kpc 的地方堆积成一个环状结构。在半径为 2 kpc 的中心区域,HCN 的发射增强了两个数量级,而在该区域之外,其强度会随着银心距离的增加而降低。HCN 光谱中的分量数量与环境密切相关,在中心和棒状区域有多个速度特征。HCN光谱在中心和条带上呈现出多个速度特征,这显示出强烈的环境依赖性。我们在这些区域发现了 HCN/CO 比率的增加,这与可能与分子外流有关的速度成分相对应。我们还发现,作为致密气体恒星形成效率指标的红外总光度与致密气体质量之比,在大约 200 M⊙ pc-2 的范围内与分子气体表面密度是反相关的。然而,超过这一点后,该比率开始增加。我们认为,利用分子发射光谱特征的信息是了解星系分子性质的一个重要方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The properties and kinematics of HCN emission across the closest starburst galaxy NGC 253 observed with ALMA
Context. Investigating molecular gas tracers, such as hydrogen cyanide (HCN), to probe higher densities than CO emission across nearby galaxies remains challenging. This is due to the large observing times required to detect HCN at a high sensitivity and spatial resolution. Although approximate kiloparsec scales of HCN maps are available for tens of galaxies, higher-resolution maps still need to be available.Aims. We aim to study the properties of molecular gas, the contrast in intensity between two tracers that probe different density regimes (the HCN(1–0)/CO(2–1) ratio), and their kinematics across NGC 253, one of the closest starburst galaxies. With its advanced capabilities, the Atacama Large Millimeter/submillimeter Array (ALMA) can map these features at a high resolution across a large field of view and uncover the nature of such dense gas in extragalactic systems.Methods. We present new ALMA Atacama Compact Array and Total Power (ACA+TP) observations of the HCN emission across NGC 253. The observations cover the inner 8.6′ of the galaxy disk at a spatial resolution of 300 pc. Our study examines the distribution and kinematics of the HCN-traced gas and its relationship with the bulk molecular gas traced by CO(2–1). We analyze the integrated intensity and mean velocity of HCN and CO along each line of sight. We also used the SCOUSE software to perform spectral decomposition, which considers each velocity component separately.Results. We find that the denser molecular gas traced by HCN piles up in a ring-like structure at a radius of 2 kpc. The HCN emission is enhanced by two orders of magnitude in the central 2 kpc regions, beyond which its intensity decreases with increasing galactocentric distance. The number of components in the HCN spectra shows a robust environmental dependence, with multiple velocity features across the center and bar. The HCN spectra exhibit multiple velocity features across the center and bar, which shows a robust environmental dependence. We have identified an increase in the HCN/CO ratio in these regions, corresponding to a velocity component likely associated with a molecular outflow. We have also discovered that the ratio between the total infrared luminosity and dense gas mass, which is an indicator of the star formation efficiency of dense gas, is anticorrelated with the molecular gas surface density up to approximately 200 M pc−2. However, beyond this point, the ratio starts to increase.Conclusions. We argue that using information about spectroscopic features of molecular emission is an important aspect of understanding molecular properties in galaxies.
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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