论文标题

关于HR 8799和行星C的化学丰度

On the Chemical Abundance of HR 8799 and the Planet c

论文作者

Wang, Ji, Wang, Jason, Ma, Bo, Chilcote, Jeffrey, Ertel, Steve, Guyon, Olivier, Ilyin, Ilya, Jovanovic, Nemanja, Kalas, Paul, Lozi, Julien, Macintosh, Bruce, Stone, Jordan, Strassmeier, Klaus G.

论文摘要

比较行星和宿主恒星的化学丰度揭示了起源和地层路径。通过高分辨率光谱法测量了恒星丰度。另一方面,行星丰度通常是从低分辨率数据推断出来的。对于直接成像的系外行星,可以从一系列高对比度成像/光谱仪器中获得数据。在这里,我们研究了HR 8799及其行星的化学丰度。我们使用LBT/PEPSI(r = 120,000)和档案竖琴数据测量恒星丰度数据:Stellar [C/H],[O/H]和C/O为0.11 $ \ pm $ 0.12,0.12,0.12 $ \ pm $ 0.14,0.54 $^{+0.54 $^{+0.12}} _ {-0.09} $ compectect。我们使用新近获得的Subaru/Charis数据以及档案Gemini/GPI和Keck/Osiris数据进行大气检索。我们用petitradtrans对行星谱进行建模,并使用Pymultinest进行检索。从子赛车到恒星C和o丰度,检索到的行星丰度可能会因$ \ sim $ 0.5 dex而异。差异取决于是否选择了坚固的先验来确保合理的行星质量。此外,与以前的作品的比较还揭示了丰度测量的不一致。我们讨论可能导致不一致的潜在问题,例如,在检索物理学和化学中的单个数据集中的系统学以及不同的假设。我们得出的结论是,除非问题得到充分解决,否则无法获得强有力的检索。

Comparing chemical abundances of a planet and the host star reveals the origin and formation path. Stellar abundance is measured with high-resolution spectroscopy. Planet abundance, on the other hand, is usually inferred from low-resolution data. For directly imaged exoplanets, the data are available from a slew of high-contrast imaging/spectroscopy instruments. Here, we study the chemical abundance of HR 8799 and its planet c. We measure stellar abundance using LBT/PEPSI (R=120,000) and archival HARPS data: stellar [C/H], [O/H], and C/O are 0.11$\pm$0.12, 0.12$\pm$0.14, and 0.54$^{+0.12}_{-0.09}$, all consistent with solar values. We conduct atmospheric retrieval using newly obtained Subaru/CHARIS data together with archival Gemini/GPI and Keck/OSIRIS data. We model the planet spectrum with petitRADTRANS and conduct retrieval using PyMultiNest. Retrieved planetary abundance can vary by $\sim$0.5 dex, from sub-stellar to stellar C and O abundances. The variation depends on whether strong priors are chosen to ensure a reasonable planet mass. Moreover, comparison with previous works also reveals inconsistency in abundance measurements. We discuss potential issues that can cause the inconsistency, e.g., systematics in individual data sets and different assumptions in the physics and chemistry in retrieval. We conclude that no robust retrieval can be obtained unless the issues are fully resolved.

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