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基于直接成像法的多星系统观测
引用本文:陈祎力,朱永田,赵刚,窦江培.基于直接成像法的多星系统观测[J].天文学报,2022,63(1):8-90.
作者姓名:陈祎力  朱永田  赵刚  窦江培
作者单位:中国科学院国家天文台南京天文光学技术研究所;中国科学院天文光学技术重点实验室(南京天文光学技术研究所);中国科学院大学;中国科学院大学天文与空间科学学院
基金项目:国家自然科学基金项目(11827804、U2031210、11873068);中国载人航天工程巡天空间望远镜专项科学研究项目(CMS-CSST-2021-A11)资助。
摘    要:系外行星直接成像探测能够获取系外行星更全面的物理信息,是未来搜寻系外生命的关键技术之一.针对近期地基望远镜高对比度成像观测数据,对新发现的多星候选体进行系统展示.前期,结合地基系外行星高对比度成像设备观测能力,从已发表文献整理的Gaia星表恒星数据中筛选,得到约1000个观测目标.这些目标分布于不同的年轻星团中.近期,使用Palomar天文台Hale望远镜对上述观测目标中的42个目标在K波段开展了高对比度成像观测.这些目标恒星在可见光波段为7.5-14.2019年经过两轮观测,发现了6个多星系统候选体,这些目标在Gaia Data Release 2星表和Gaia early Data Release 3星表中难以确认是单星还是多星系统.

关 键 词:双星:成像  红外:恒星  方法:观测
收稿时间:2021/3/23 0:00:00

Multi-star System Observations Based on the Direct-imaging Method
CHEN Yi-li,ZHU Yong-tian,ZHAO Gang,DOU Jiang-pei.Multi-star System Observations Based on the Direct-imaging Method[J].Acta Astronomica Sinica,2022,63(1):8-90.
Authors:CHEN Yi-li  ZHU Yong-tian  ZHAO Gang  DOU Jiang-pei
Institution:(National Astronomical Observatories/Nanjing Institute of Astronomical Optics&Technology,Chinese Academy of Sciences,Nanjing 210042;CAS Key Laboratory of Astronomical Optics&Technology,Nanjing Institute of Astronomical Optics&Technology,Nanjing 210042;University of Chinese Academy of Sciences,Beijing 100049;School of Astronomy and Space Sciences University of Chinese Academy of Sciences,Beijing 100049)
Abstract:The direct-imaging exploration can obtain comprehensive physical information of exoplanets, which is a key technology to search for extraterrestrial life in the future. In this paper, based on our recent high-contrast imaging data of ground-based telescope, the newly discovered multi-star candidates are presented. In the early stage, combined with the ability of high-contrast imaging equipment for the exoplanets in the ground-based system, we select about 1000 targets from published works which are compiled using the catalogs released by Gaia. These targets are distributed in different young star clusters. Recently,we used Hale Telescope at Palomar Observatory to carry out high-contrast imaging observation on 42 of the above targets in the K-band. Most of the observed targets are 7.5--14 in the V-band. In 2019, after two rounds of observation, we discover six multi-star system candidates. It is however difficult to find out whether these targets are single-star or multi-star systems in Gaia DR2 (Data Release 2) catalog andGaia EDR3 (early Data Release 3) catalog.
Keywords:binaries:visual  infrared:stars  methods:observational
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