论文标题

通过耦合球和crires+,在高光谱分辨率下直接表征年轻的巨型系外行星

Direct characterization of young giant exoplanets at high spectral resolution by coupling SPHERE and CRIRES+

论文作者

Otten, G. P. P. L., Vigan, A., Muslimov, E., N'Diaye, M., Choquet, E., Seemann, U., Dohlen, K., Houllé, M., Cristofari, P., Phillips, M. W., Charles, Y., Baraffe, I., Beuzit, J. -L., Costille, A., Dorn, R., Morsy, M. El, Kasper, M., Lopez, M., Mordasini, C., Pourcelot, R., Reiners, A., Sauvage, J. -F.

论文摘要

对具有高分辨率光谱仪的直接成像系外行星的大气的研究表明,在所研究的系外行星的位置,在恒星光环上的噪声中,它们的表征主要受到限制。因此,高对比度成像和高光谱分辨率的仪器组合抑制了这种噪声并解决光谱线可以产生更高的质量光谱。我们研究了VLT处的球体和crires+之间提出的Hirise纤维耦合的性能,以进行直接成像的行星的光谱表征。使用Hirise的端到端模拟,我们确定了在$ H $和$ K $带中检测到已知系外行星的分子物种的S/N,并将其与Crires+进行比较。我们研究了Hirise的最终检测限制,这是恒星幅度的函数,并量化了不同的冠状动脉和系统传输的影响。我们发现,对于$β$ pic或51 ERI等明亮宿主周围的同伴来说,Hirise在很大程度上胜过Crires+。对于$ h = 3.5 $的主机,我们观察到在观察时间的时间最多达到16倍,以达到200 MAS的同伴的同一S/N。更普遍的是,Hirise在两个小时的集成时间中提供的性能比CRIRES+在50-350 MAS之间的主机之间提供了更好的性能,$ h <8.5 $,介于50-700 MAS之间的$ h <7 $。对于诸如PDS 70和髋关节65426之类的轻率宿主,未观察到显着改善。我们发现,由于较高的传输和基于纤维的星光抑制,使用无冠状动脉表征已知的系外行星时,可以产生最佳的S/N。我们证明系统的整体传输实际上是性能的主要驱动力。最后,我们表明,Hirise的表现优于明亮恒星的球体最佳检测极限,这为表征其他技术检测到的未来行星伴侣打开了主要可能性。

Studies of atmospheres of directly imaged exoplanets with high-resolution spectrographs have shown that their characterization is predominantly limited by noise on the stellar halo at the location of the studied exoplanet. An instrumental combination of high-contrast imaging and high spectral resolution that suppresses this noise and resolves the spectral lines can therefore yield higher quality spectra. We study the performance of the proposed HiRISE fiber coupling between the SPHERE and CRIRES+ at the VLT for spectral characterization of directly imaged planets. Using end-to-end simulations of HiRISE we determine the S/N of the detection of molecular species for known exoplanets in $H$ and $K$ bands, and compare them to CRIRES+. We investigate the ultimate detection limits of HiRISE as a function of stellar magnitude, and we quantify the impact of different coronagraphs and of the system transmission. We find that HiRISE largely outperforms CRIRES+ for companions around bright hosts like $β$ Pic or 51 Eri. For an $H=3.5$ host, we observe a gain of a factor of up to 16 in observing time with HiRISE to reach the same S/N on a companion at 200 mas. More generally, HiRISE provides better performance than CRIRES+ in two-hour integration times between 50-350 mas for hosts with $H<8.5$ and between 50-700 mas for $H<7$. For fainter hosts like PDS 70 and HIP 65426, no significant improvements are observed. We find that using no coronagraph yields the best S/N when characterizing known exoplanets due to higher transmission and fiber-based starlight suppression. We demonstrate that the overall transmission of the system is in fact the main driver of performance. Finally, we show that HiRISE outperforms the best detection limits of SPHERE for bright stars, opening major possibilities for the characterization of future planetary companions detected by other techniques.

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