论文标题
盐HRS功能用于时间解决脉动分析:与ROAP星$α$ CIRCINI的测试
SALT HRS capabilities for time resolved pulsation analysis: a test with the roAp star $α$ Circini
论文作者
论文摘要
光谱法是检测快速振荡AP(ROAP)恒星变异性的强大工具。该技术需要简短的集成时间和高分辨率,因此仅限于少数望远镜和工具。为了测试南部非洲大型望远镜(SALT)高分辨率光谱仪(HRS)的能力,以研究ROAP恒星中的脉动,我们在先前未使用的仪器配置中收集了2.45小时的高分辨率ROAP Star $α$ CIR的高分辨率数据。我们使用互相关方法提取了使用不同的稀土元素和H $_α$的核心提取径向速度测量值。我们使用一组$α$ CIR数据进行了相同的分析,该数据收集了高精度径向速度搜索器(HARPS)光谱仪为我们的盐HRS测试提供基准。我们测量了HRS数据中的显着径向速度变化,并表明我们的结果在两个数据集之间非常一致,并且主要脉动模式的信噪比检测相似。使用HRS数据,我们报告了第二种模式的检测,表明该仪器能够在短观测窗口中检测多个和低振幅信号。我们得出的结论是,盐HRS非常适合表征AP恒星中的脉动,为望远镜打开了新的科学窗口。尽管我们的分析集中在ROAP恒星上,但基本结果适用于需要高时间和光谱分辨率观察的其他天体物理学领域。
Spectroscopy is a powerful tool for detecting variability in the rapidly oscillating Ap (roAp) stars. The technique requires short integrations times and high resolution, and so is limited to only a few telescopes and instruments. To test the capabilities of the High Resolution Spectrograph (HRS) at the Southern African Large Telescope (SALT) for the study of pulsations in roAp stars, we collected 2.45 hr of high-resolution data of the well studied roAp star $α$ Cir in a previously unused instrument configuration. We extracted radial velocity measurements using different rare earth elements, and the core of H$_α$, via the cross correlation method. We performed the same analysis with a set of $α$ Cir data collected with the High Accuracy Radial velocity Planet Searcher (HARPS) spectrograph to provide a benchmark for our SALT HRS test. We measured significant radial velocity variations in the HRS data and show that our results are in excellent agreement between the two data sets, with similar signal-to-noise ratio detections of the principal pulsation mode. With the HRS data, we report the detection of a second mode, showing the instrument is capable of detecting multiple and low-amplitude signals in a short observing window. We concluded that SALT HRS is well-suited for characterising pulsations in Ap stars, opening a new science window for the telescope. Although our analysis focused on roAp stars, the fundamental results are applicable to other areas of astrophysics where high temporal and spectral resolution observations are required.