论文标题

利用望远镜的全球望远镜网络更新高清行星高清80606 b的埃弗默斯,并确保JWST的有效计划

Utilizing a global network of telescopes to update the ephemeris for the highly eccentric planet HD 80606 b and to ensure the efficient scheduling of JWST

论文作者

Pearson, Kyle A., Beichman, Chas, Fulton, Benjamin J., Esposito, Thomas M., Zellem, Robert T., Ciardi, David R., Rolfness, Jonah, Engelke, John, Fatahi, Tamim, Zimmerman-Brachman, Rachel, Avsar, Arin, Bhalerao, Varun, Boyce, Pat, Bretton, Marc, Burnett, Alexandra D., Burt, Jennifer, Fowler, Martin, Gallego, Daniel, Gomez, Edward, Guillet, Bruno, Hilburn, Jerry, Jongen, Yves, Kataria, Tiffany, Kokori, Anastasia, Kumar, Harsh, Kuossari, Petri, Lekkas, Georgios, Marchini, Alessandro, Meneghelli, Nicola, Ngeow, Chow-Choong, Primm, Michael, Samantaray, Subham, Shimizu, Masao, Silvis, George, Sienkiewicz, Frank, Swain, Vishwajeet, Tan, Joshua, Tock, Kalee, Wagner, Kevin, Wünsche, Anaël

论文摘要

过境行星HD80606B由于高度偏心而在111天轨道期间受到1000倍的伤害(E = 0.93)。该行星的有效温度在几个小时内从400k上升到140万以上,因为它在脑膜炎期间迅速通过其宿主恒星的0.03aU升高。詹姆斯·韦伯(James Webb)太空望远镜(JWST)在日食期间的光谱观察结果(在围胞菌之前的几个小时都方便地定向),有望利用这种高度可变的环境来研究这种高度可变的环境,以研究各种大气,包括各种大气,包括化学和动态时代的成分,化学和动态时代和大尺度的大气层和大尺度的大气层。对于计划和解释这些观察至关重要的是对地球轨道的准确了解。我们报告了两项全面传输事件的观察结果:苔丝航天器观察到的2020年2月7日和2021年12月7日至8日,正如全球小型望远镜网络所观察到的那样。我们还报告了新的径向速度观测值,这些观测值是通过耦合模型进行分析以极大地改善了地球轨道象征的。我们的新轨道解决方案将JWST时代的过境和日食时机的不确定性从数十分钟到几分钟。当与计划的JWST观测值结合使用时,这种新的精度可能足以在HD80606B的轨道中寻找非keplerian效果。

The transiting planet HD80606b undergoes a 1000-fold increase in insolation during its 111-day orbit due to it being highly eccentric (e=0.93). The planet's effective temperature increases from 400K to over 1400K in a few hours as it makes a rapid passage to within 0.03AU of its host star during periapsis. Spectroscopic observations during the eclipse (which is conveniently oriented a few hours before periapsis) of HD80606b with the James Webb Space Telescope (JWST) are poised to exploit this highly variable environment to study a wide variety of atmospheric properties, including composition, chemical and dynamical timescales, and large scale atmospheric motions. Critical to planning and interpreting these observations is an accurate knowledge of the planet's orbit. We report on observations of two full-transit events: 7 February 2020 as observed by the TESS spacecraft and 7--8 December 2021 as observed with a worldwide network of small telescopes. We also report new radial velocity observations which when analyzed with a coupled model to the transits greatly improve the planet's orbital ephemeris. Our new orbit solution reduces the uncertainty in the transit and eclipse timing of the JWST era from tens of minutes to a few minutes. When combined with the planned JWST observations, this new precision may be adequate to look for non-Keplerian effects in the orbit of HD80606b.

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