论文标题

在衍射极限内对系外行星的有效检测和表征:用模式选择光子灯笼为null

Efficient detection and characterization of exoplanets within the diffraction limit: nulling with a mode-selective photonic lantern

论文作者

Xin, Yinzi, Jovanovic, Nemanja, Ruane, Garreth, Mawet, Dimitri, Fitzgerald, Michael P., Echeverri, Daniel, Lin, Jonathan, Leon-Saval, Sergio, Gatkine, Pradip, Kim, Yoo Jung, Norris, Barnaby, Sallum, Steph

论文摘要

冠状动脉允许观察到微弱的外轴外行星,但仅限于大于几个梁宽度的角度分离。接近近距离分离将大大增加可检测到的行星的预期数量,该行星与内部工作角度相反。 Vortex Fiber Nuller(VFN)是一种仪器概念,旨在表征单束宽度内的系外行星。它几乎不需要光学元素,并且与许多Coronagraph设计兼容,作为补充特征工具。但是,行星光的峰值吞吐量限制为约20%,并且测量在行星位置和磁通比上的限制不佳。我们建议通过用六端口模式选择光子灯笼替换其单模光纤来增强VFN设计,并保留原始功能,同时提供了拒绝星光但夫妇行星灯的其他几个端口。我们表明,光子灯笼也可以用作无涡流的空器。我们提出了表征光子灯笼无效(PLN)对天体物理信号和波浪前误差的响应的单色模拟,并表明将无效端口的外行驶通量结合起来大大增加了仪器的整体吞吐量。我们使用合成生成的数据显示,PLN比VFN更有效地检测外部球星。此外,在PLN的情况下,系外行星可以部分定位,其磁通比受到限制。 PLN有可能成为未来高对比度仪器中传统冠状动脉的强大特征工具。

Coronagraphs allow for faint off-axis exoplanets to be observed, but are limited to angular separations greater than a few beam widths. Accessing closer-in separations would greatly increase the expected number of detectable planets, which scales inversely with the inner working angle. The Vortex Fiber Nuller (VFN) is an instrument concept designed to characterize exoplanets within a single beam-width. It requires few optical elements and is compatible with many coronagraph designs as a complementary characterization tool. However, the peak throughput for planet light is limited to about 20%, and the measurement places poor constraints on the planet location and flux ratio. We propose to augment the VFN design by replacing its single-mode fiber with a six-port mode-selective photonic lantern, retaining the original functionality while providing several additional ports that reject starlight but couple planet light. We show that the photonic lantern can also be used as a nuller without a vortex. We present monochromatic simulations characterizing the response of the Photonic Lantern Nuller (PLN) to astrophysical signals and wavefront errors, and show that combining exoplanet flux from the nulled ports significantly increases the overall throughput of the instrument. We show using synthetically generated data that the PLN detects exoplanets more effectively than the VFN. Furthermore, with the PLN, the exoplanet can be partially localized, and its flux ratio constrained. The PLN has the potential to be a powerful characterization tool complementary to traditional coronagraphs in future high-contrast instruments.

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