...
首页> 外文期刊>The astronomical journal >Astrometric Constraints on the Masses of Long-period Gas Giant Planets in the TRAPPIST-1 Planetary System
【24h】

Astrometric Constraints on the Masses of Long-period Gas Giant Planets in the TRAPPIST-1 Planetary System

机译:TRAPPIST-1行星系统中长周期气巨行星质量的星象约束

获取原文
           

摘要

Transit photometry of the M8V dwarf star TRAPPIST-1 (2MASS J23062928-0502285) has revealed the presence of at least seven planets with masses and radii similar to that of Earth, orbiting at distances that might allow liquid water to be present on their surfaces. We have been following TRAPPIST-1 since 2011 with the CAPSCam astrometric camera on the 2.5 m du Pont telescope at the Las Campanas Observatory in Chile. In 2016, we noted that TRAPPIST-1 lies slightly farther away than previously thought, at 12.49 pc, rather than 12.1 pc. Here, we examine 15 epochs of CAPSCam observations of TRAPPIST-1, spanning the five years from 2011 to 2016, and obtain a revised trigonometric distance of 12.56?±?0.12 pc. The astrometric data analysis pipeline shows no evidence for a long-period astrometric wobble of TRAPPIST-1. After proper motion and parallax are removed, residuals at the level of ±1.3 mas remain. The amplitude of these residuals constrains the masses of any long-period gas giant planets in the TRAPPIST-1 system: no planet more massive than ~4.6 M Jup orbits with a 1 year period, and no planet more massive than ~1.6 M Jup orbits with a 5 year period. Further refinement of the CAPSCam data analysis pipeline, combined with continued CAPSCam observations, should either detect any long-period planets, or put an even tighter constraint on these mass upper limits.
机译:M8V矮星TRAPPIST-1(2MASS J23062928-0502285)的瞬态光度法显示,存在至少7个质量和半径与地球相似的行星,其绕行轨道的距离可能使液态水存在于其表面。自2011年以来,我们一直在智利Las Campanas天文台的2.5 m du Pont望远镜上使用CAPSCam天文相机跟踪TRAPPIST-1。在2016年,我们注意到TRAPPIST-1位于12.49 pc之前,比以前认为的稍微远一点,而不是12.1 pc。在这里,我们研究了从2011年到2016年的5年中,CAPSCam观测到的TRAPPIST-1的15个纪元,得到的修正三角距离为12.56?±?0.12 pc。天文数据分析管道没有证据表明TRAPPIST-1会长期出现天文摆动。除去适当的运动和视差后,残留的误差为±1.3 mas。这些残差的幅度限制了TRAPPIST-1系统中任何长周期天然气巨行星的质量:在1年的周期内,没有一颗行星的质量超过约4.6 M焦普轨道,并且没有行星的质量超过约1.6 M Jup轨道。期限为5年。 CAPSCam数据分析管道的进一步完善,再加上持续的CAPSCam观测,应该可以检测到任何长周期的行星,或者对这些质量上限施加更严格的约束。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号