论文标题

KECK/NIRC2-PWFS早期高对比度成像结果:SR 21磁盘

Early High-contrast Imaging Results with Keck/NIRC2-PWFS: The SR 21 Disk

论文作者

Uyama, Taichi, Ren, Bin, Mawet, Dimitri, Ruane, Garreth, Bond, Charlotte Z., Hashimoto, Jun, Liu, Michael C., Muto, Takayuki, Ruffio, Jean-Baptiste, Wallack, Nicole, Baranec, Christoph, Bowler, Brendan P., Choquet, Elodie, Chun, Mark, Delorme, Jacques-Robert, Fogarty, Kevin, Guyon, Olivier, Jensen-Clem, Rebecca, Meshkat, Tiffany, Ngo, Henry, Wang, Jason J., Wang, Ji, Wizinowich, Peter, Ygouf, Marie, Zuckerman, Benjamin

论文摘要

系外行星和原星磁盘的高对比度成像取决于自适应光学仪器进行的波前感应和校正。从经典上讲,波前传感是在光学波长上进行的,这使红色靶标(例如M型恒星或灭绝的T Tauri恒星)具有高度对比度成像。 Keck/Nirc2已将近红外(NIR)检测器技术与金字塔波前传感器(PWFS)相结合。使用这个新模块,我们观察到SR〜21,这是一个年轻的恒星,在NIR波长下比光波长更明亮。与使用光学波前传感相比,我们在相似的自然观察条件下获得了$ \ sim $ 20 \%的strehl比率相比。利用角度差成像和参考-star差异成像的进一步后处理证实了VLT/Sphere Polarimetric观测报告的螺旋特征,这是SR〜21在$ l^\ prime $ band时首次检测到SR〜21螺旋。我们还比较了结果的对比度限制($ 10^{ - 4} $,$ 0 \ farcs4 $和$ 2 \ times10^{ - 5} $ at $ 1 \ farcs0 $)与具有光学波之间的档案数据,并确认了改进,尤其是在$ \ leq0 \ leq0 \ farcs5 $。我们的观察表明,NIR PWFS改善了AO的性能,将来将为红色目标提供更多机会。

High-contrast imaging of exoplanets and protoplanetary disks depends on wavefront sensing and correction made by adaptive optics instruments. Classically, wavefront sensing has been conducted at optical wavelengths, which made high-contrast imaging of red targets such as M-type stars or extincted T Tauri stars challenging. Keck/NIRC2 has combined near-infrared (NIR) detector technology with the pyramid wavefront sensor (PWFS). With this new module we observed SR~21, a young star that is brighter at NIR wavelengths than at optical wavelengths. Compared with the archival data of SR~21 taken with the optical wavefront sensing we achieved $\sim$20\% better Strehl ratio in similar natural seeing conditions. Further post-processing utilizing angular differential imaging and reference-star differential imaging confirmed the spiral feature reported by the VLT/SPHERE polarimetric observation, which is the first detection of the SR~21 spiral in total intensity at $L^\prime$ band. We also compared the contrast limit of our result ($10^{-4}$ at $0\farcs4$ and $2\times10^{-5}$ at $1\farcs0$) with the archival data that were taken with optical wavefront sensing and confirmed the improvement, particularly at $\leq0\farcs5$. Our observation demonstrates that the NIR PWFS improves AO performance and will provide more opportunities for red targets in the future.

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