论文标题

阿尔玛在行星质量伴侣SR 12 C周围发现磁盘

ALMA Discovery of a Disk around the Planetary-mass Companion SR 12 c

论文作者

Wu, Ya-Lin, Bowler, Brendan P., Sheehan, Patrick D., Close, Laird M., Eisner, Joshua A., Best, William M. J., Ward-Duong, Kimberly, Zhu, Zhaohuan, Kraus, Adam L.

论文摘要

我们报告了一个Atacama大毫米/亚毫米阵列0.88毫米(频段7)在SR 12 C附近的积聚磁盘的连续性检测,$ \ sim $ 11 $ M _ {\ rm jup} $ jup} $ planetary-mass companion(pmc)或者在980 au的宿主binary barine binary。这是对宽PMC周围的磁盘的第一次亚毫米仪检测。 The disk has a flux density of $127 \pm14~μ$Jy and is not resolved by the $\sim$0.1" beam, so the dust disk radius is likely less than 5 au and can be much smaller if the dust continuum is optically thick. If, however, the dust emission is optically thin, then the SR 12 c disk has a comparable dust mass to the circumplanetary disk around PDS 70 c but is about five低于$ \ sim $ 12 $ m _ {\ rm jup} $ freeploping ots 44的时间。这表明圆盘围绕绑定和未结合的行星质量物体可以跨越广泛的质量,估计的气体质量估计为$ 10^{ - 11}}} 〜m_ \ odot $ yr $ yr $ yr $ yr $ yr yr。吸收并不重要,$ {}^{12} $ CO(3-2)的非探测意味着SR 12 c周围的紧凑型气盘可能检测到更多的PMC磁盘。

We report an Atacama Large Millimeter/submillimeter Array 0.88 mm (Band 7) continuum detection of the accretion disk around SR 12 c, an $\sim$11 $M_{\rm Jup}$ planetary-mass companion (PMC) orbiting its host binary at 980 au. This is the first submillimeter detection of a circumplanetary disk around a wide PMC. The disk has a flux density of $127 \pm14~μ$Jy and is not resolved by the $\sim$0.1" beam, so the dust disk radius is likely less than 5 au and can be much smaller if the dust continuum is optically thick. If, however, the dust emission is optically thin, then the SR 12 c disk has a comparable dust mass to the circumplanetary disk around PDS 70 c but is about five times lower than that of the $\sim$12 $M_{\rm Jup}$ free-floating OTS 44. This suggests that disks around bound and unbound planetary-mass objects can span a wide range of masses. The gas mass estimated with an accretion rate of $10^{-11}~M_\odot$ yr$^{-1}$ implies a gas-to-dust ratio higher than 100. If cloud absorption is not significant, a nondetection of ${}^{12}$CO(3-2) implies a compact gas disk around SR 12 c. Future sensitive observations may detect more PMC disks at 0.88 mm flux densities of $\lesssim$100 $μ$Jy.

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