论文标题
红外干涉仪,在X射线二进制中以空间和光谱解析喷气机
Infrared interferometry to spatially and spectrally resolve jets in X-ray binaries
论文作者
论文摘要
红外干涉法是用于基于精确地面观测的新领域,新的仪器可实现MILLIARCSOCNE(MAS)的空间分辨率,用于微弱的源,以及10微钙环的订单。这项技术已经导致了银河中心及其轨道恒星,AGN和Exo-planets的超级质量黑洞的突破,并且可以用于研究X射线二元(XRBS),特别是微Quasars。除了使用质心摇摆并在MAS尺度上构造系统的轨道参数并在空间上解析JET离散弹出外,我们还提出了一种新的方法,以识别对红外带的各种组件的识别:积聚磁盘,JETS,JETS,JETS和COMPANION Star。我们证明,非常大的望远镜干涉仪(VLTI)上的重力仪器应该能够检测到许多来源的质心转移,为未来十年的无线电广播全天空调查中发现的无数瞬态探索途径。我们还提出了低质量X射线二进制瞬变的首次概念验证重力观察Maxi J1820+070,以在MAS量表上搜索扩展的喷气机。我们通过直接成像对紧凑型射流的红外发射区域的大小放置在硬态XRB中的最严格约束。
Infrared interferometry is a new frontier for precision ground based observing, with new instrumentation achieving milliarcsecond (mas) spatial resolutions for faint sources, along with astrometry on the order of 10 microarcseconds. This technique has already led to breakthroughs in the observations of the supermassive black hole at the Galactic centre and its orbiting stars, AGN, and exo-planets, and can be employed for studying X-ray binaries (XRBs), microquasars in particular. Beyond constraining the orbital parameters of the system using the centroid wobble and spatially resolving jet discrete ejections on mas scales, we also propose a novel method to discern between the various components contributing to the infrared bands: accretion disk, jets and companion star. We demonstrate that the GRAVITY instrument on the Very Large Telescope Interferometer (VLTI) should be able to detect a centroid shift in a number of sources, opening a new avenue of exploration for the myriad of transients expected to be discovered in the coming decade of radio all-sky surveys. We also present the first proof-of-concept GRAVITY observation of a low-mass X-ray binary transient, MAXI J1820+070, to search for extended jets on mas scales. We place the tightest constraints yet via direct imaging on the size of the infrared emitting region of the compact jet in a hard state XRB.