论文标题
如五百米的光圈球形射电望远镜所示,Z $ \ SIM $ 0.05的星形星系的原子气
The atomic gas of star-forming galaxies at z$\sim$0.05 as revealed by the Five-hundred-meter Aperture Spherical Radio Telescope
论文作者
论文摘要
我们报告了在五百米高的孔径球形射电望远镜(FAST)的调试阶段进行的四个Z $ \ SIM $ 0.05星形星系的新的HI观察结果。 FAST是最大的单端望远镜,带有500米的光圈和19梁接收器。利用FAST提供的前所未有的灵敏度,我们旨在通过HI 21cm发射线研究原子气,以低$ z $ Z $星形的星系从ValparaísoAlma/Apex线排放调查(Vales)项目中汲取。与以前的Alma CO($ j = 1-0 $)的观测值一起,HI数据提供了至关重要的信息来测量气体质量和动态。作为一项试点HI调查,我们以$ z \ sim0.05 $的价格针对四个本地星系星系。特别是,Arecibo Legacy Fast Alfa调查(Alfalfa)已经在HI中检测到了其中一个,可以仔细比较。我们使用一种开关观察方法,使我们能够在仅20分钟内目标集成时间内以1.7公里/s的速度分辨率达到0.7MJY/BEAM的RMS。我们证明了快速19梁接收器的巨大功能,可以推动半乳酸外源的HI发射线的可检测性。 FAST检测到的HI排放线与先前的苜蓿结果表现出良好的一致性。我们的观察结果与以前的多波长数据有关,以揭示这些低$ z $星系的物理特性。我们发现CO($ J = 1-0 $)和HI排放线配置文件相似。从HI数据估算的动力质量比Baryon质量高的数量级和来自CO观察的动力学质量,这意味着HI动力学探测的质量由暗物质晕组成。在一种情况下,目标显示了线中心的CO($ j = 1-0 $),可以通过增强的CO($ j = 1-0 $)的排放来解释,这是由核星状爆炸引起的,显示出很高的速度分散体。
We report new HI observations of four z$\sim$0.05 star-forming galaxies undertaken during the commissioning phase of the Five-hundred-meter Aperture Spherical Radio Telescope (FAST). FAST is the largest single-dish telescope with a 500 meter aperture and a 19-Beam receiver. Exploiting the unprecedented sensitivity provided by FAST, we aim to study the atomic gas, via the HI 21cm emission line, in low-$z$ star-forming galaxies taken from the Valparaíso ALMA/APEX Line Emission Survey (VALES) project. Together with previous ALMA CO($J=1-0$) observations, the HI data provides crucial information to measure the gas mass and dynamics. As a pilot HI survey, we targeted four local star-forming galaxies at $z\sim0.05$. In particular, one of them has already been detected in HI by the Arecibo Legacy Fast ALFA survey (ALFALFA), allowing a careful comparison. We use an ON-OFF observing approach that allowed us to reach an rms of 0.7mJy/beam at a 1.7km/s velocity resolution within only 20 minutes ON-target integration time. We demonstrate the great capabilities of the FAST 19-beam receiver for pushing the detectability of the HI emission line of extra-galactic sources. The HI emission line detected by FAST shows good consistency with the previous ALFALFA results. Our observations are put in context with previous multi-wavelength data to reveal the physical properties of these low-$z$ galaxies. We find that the CO($J=1-0$) and HI emission line profiles are similar. The dynamical mass estimated from the HI data is an order of magnitude higher than the baryon mass and the dynamical mass derived from the CO observations, implying that the mass probed by dynamics of HI is dominated by the dark matter halo. In one case, a target shows an excess of CO($J=1-0$) in the line centre, which can be explained by an enhanced CO($J=1-0$) emission induced by a nuclear starburst showing high velocity dispersion.