论文标题

宽带涡流纤维无效:衍射极限处的高分散系外行星科学

Broadband vortex fiber nulling: high-dispersion exoplanet science at the diffraction limit

论文作者

Echeverri, Daniel, Ruane, Garreth, Jovanovic, Nemanja, Delorme, Jacques-Robert, Wang, Jason, Millar-Blanchaer, Maxwell A., Xuan, Jerry, Toman, Katie, Mawet, Dimitri

论文摘要

随着确认的系外行星的数量不断增长,频谱的推动力增加了,以确定它们的大气组成,地层路径,旋转率和可居住性。但是,有大量已知的系外行星不能不传输其恒星,要么是通过径向速度(RV)方法在很小的角度分离下检测到的,因此传统的冠状系统无法访问它们。 Vortex纤维无效(VFN)是一种新的单孔干涉技术,它使用整个望远镜学生在传统的冠状动脉和RV或Transit方法之间弥合差距,通过启用在衍射限制和衍射极限内的直接观察和光谱表征。通过将漩涡掩模与单个模式光纤相结合,轴线星光被拒绝,而离轴行星灯耦合并有效地路由到辐射计或光谱仪进行分析。过去,我们在实验室中单色证明了VFN。在本文中,我们介绍了15%带宽灯的$ <10^{ - 4} $的nulls的多色验证。我们还提供了有关部署计划的最新信息,并预测了Keck Planet Imager和Taremiber(KPIC)仪器的VFN模式的收益估计。使用PSISIM,与几个组合作开发了一个模拟软件包,我们评估了KPIC VFN检测和表征不同类型的目标的能力,包括围绕有希望的年轻运动组恒星的行星候选者以及通过RV方法检测到的已知系外行星。 KPIC VFN在家演示中将为凯克·希斯佩克(Keck-Hispec)和TMT-modhis等未来工具的部署铺平道路,在那里它可以从他们的恒星中提供低分辨率的大众球行星的高分辨率光谱。

As the number of confirmed exoplanets continues to grow, there is an increased push to spectrally characterize them to determine their atmospheric composition, formation paths, rotation rates, and habitability. However, there is a large population of known exoplanets that either do not transit their star or have been detected via the radial velocity (RV) method at very small angular separations such that they are inaccessible to traditional coronagraph systems. Vortex Fiber Nulling (VFN) is a new single-aperture interferometric technique that uses the entire telescope pupil to bridge the gap between traditional coronagraphy and RV or Transit methods by enabling the direct observation and spectral characterization of targets at and within the diffraction limit. By combining a vortex mask with a single mode fiber, the on-axis starlight is rejected while the off-axis planet light is coupled and efficiently routed to a radiometer or spectrograph for analysis. We have demonstrated VFN in the lab monochromatically in the past. In this paper we present a polychromatic validation of VFN with nulls of $<10^{-4}$ across 15% bandwidth light. We also provide an update on deployment plans and predicted yield estimates for the VFN mode of the Keck Planet Imager and Characterizer (KPIC) instrument. Using PSISIM, a simulation package developed in cooperation with several groups, we assess KPIC VFN's ability to detect and characterize different types of targets including planet candidates around promising young-moving-group stars as well as known exoplanets detected via the RV method. The KPIC VFN on-sky demonstration will pave the road to deployment on future instruments such as Keck-HISPEC and TMT-MODHIS where it could provide high-resolution spectra of sub-Jupiter mass planets down to 5 milliarcseconds from their star.

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