SUBARU Near-Infrared Imaging Polarimetry of Misaligned Disks Around The SR24 Hierarchical Triple System
Satoshi Mayama, Sebasti\'an P\'erez, Nobuhiko Kusakabe, Takayuki Muto,, Takashi Tsukagoshi, Michael L. Sitko, Michihiro Takami, Jun Hashimoto,, Ruobing Dong, Jungmi Kwon, Saeko S. Hayashi, Tomoyuki Kudo, Masayuki, Kuzuhara, Kate B. Follette, Misato Fukagawa, Munetake Momose

TL;DR
This study uses high-resolution near-infrared polarimetry to reveal the structure and misalignment of disks in the SR24 triple star system, providing insights into their morphology and interactions.
Contribution
First detailed NIR polarimetric imaging of the misaligned circumstellar disks in the SR24 system, confirming their misalignment and revealing their morphology and symmetry.
Findings
Both disks are resolved with elongated features.
Disks are misaligned with each other.
The circumsecondary disk is likely circumbinary.
Abstract
The SR24 multi-star system hosts both circumprimary and circumsecondary disks, which are strongly misaligned from each other. The circumsecondary disk is circumbinary in nature. Interestingly, both disks are interacting, and they possibly rotate in opposite directions. To investigate the nature of this unique twin disk system, we present 0.''1 resolution near-infrared polarized intensity images of the circumstellar structures around SR24, obtained with HiCIAO mounted on the Subaru 8.2 m telescope. Both the circumprimary disk and the circumsecondary disk are resolved and have elongated features. While the position angle of the major axis and radius of the NIR polarization disk around SR24S are 55 and 137 au, respectively, those around SR24N are 110 and 34 au, respectively. With regard to overall morphology, the circumprimary disk around SR24S shows strong asymmetry,…
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