论文标题

受约束的参考星差成像:启用高度结构化杂质磁盘的高保真成像

Constrained Reference Star Differential Imaging: Enabling High-Fidelity Imagery of Highly Structured Circumstellar Disks

论文作者

Lawson, Kellen, Currie, Thayne, Wisniewski, John, Groff, Tyler, McElwain, Michael, Schlieder, Joshua

论文摘要

高对比度成像为我们提供了研究偶然磁盘和仍然嵌入其中的行星的机会 - 为行星系统的形成和演变提供了关键的见解。但是,即使使用相对保守的方法(例如参考星形差异成像(RDI)),通常也需要抑制恒星光照光的后处理技术,通常会导致折光光的损失。我们介绍了``限制的参考星差成像''(约束RDI),这是一种新的RDI点扩展功能(PSF)填充技术,用于具有折叠盘盘的系统。受限的RDI使用高分辨率极化强度(PI)图像或盘模型或盘模型严重限制了造成的信号损失,甚至可以消除过度的信号损失。 我们证明了利用偏光数据的约束RDI能够在总强度中对AB Aurigae Protoplanetary磁盘产生无屈服的检测。 PI受限的RDI使我们能够果断地恢复已确认的,最近发现的原始球星AB Aurigae B的光谱特征(Currie等,2022)。我们进一步证明,受约束的RDI可以成为即将获得的詹姆斯·韦伯太空望远镜磁盘的冠状成像的强大分析工具。在这两种情况下,受约束的RDI都提供了准备就绪的产品,可以对磁盘进行更详细的研究,并对嵌入式外部行星进行更强大的验证。

High-contrast imaging presents us with the opportunity to study circumstellar disks and the planets still embedded within them -- providing key insights into the formation and evolution of planetary systems. However, the post-processing techniques that are often needed to suppress stellar halo light typically result in significant and variable loss of circumstellar light, even when using relatively conservative approaches like reference star differential imaging (RDI). We introduce ``constrained reference star differential imaging" (constrained RDI), a new class of RDI point spread function (PSF)-subtraction techniques for systems with circumstellar disks. Constrained RDI utilizes either high-resolution polarized intensity (PI) images or disk models to severely limit or even eliminate the signal loss due to oversubtraction that is common to RDI. We demonstrate the ability of constrained RDI utilizing polarimetric data to yield an oversubtraction-free detection of the AB Aurigae protoplanetary disk in total intensity. PI-constrained RDI allows us to decisively recover the spectral signature of the confirmed, recently-discovered protoplanet, AB Aurigae b (Currie et al. 2022). We further demonstrate that constrained RDI can be a powerful analysis tool for soon-to-be-acquired James Webb Space Telescope coronagraphic imaging of disks. In both cases, constrained RDI provides analysis-ready products that enable more detailed studies of disks and more robust verification of embedded exoplanets.

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