Early Planet Formation in Embedded Disks (eDisk). V. Possible Annular Substructure in a Circumstellar Disk in the Ced110 IRS4 System

Author:

Sai Insa Choi JinshiORCID,Yen Hsi-WeiORCID,Ohashi NagayoshiORCID,Tobin John J.ORCID,Jørgensen Jes K.ORCID,Takakuwa ShigehisaORCID,Saigo KazuyaORCID,Aso YusukeORCID,Lin Zhe-Yu DanielORCID,Koch Patrick M.ORCID,Aikawa YuriORCID,Flores ChristianORCID,de Gregorio-Monsalvo ItziarORCID,Han IlseungORCID,Kido MiyuORCID,Kwon WoojinORCID,Lai Shih-PingORCID,Lee Chang WonORCID,Lee Jeong-EunORCID,Li Zhi-YunORCID,Looney Leslie W.ORCID,Mori ShojiORCID,Phuong Nguyen ThiORCID,Santamaría-Miranda AlejandroORCID,Sharma RajeebORCID,Thieme Travis J.ORCID,Tomida KengoORCID,Williams Jonathan P.ORCID

Abstract

Abstract We have observed the Class 0/I protostellar system Ced110 IRS4 at an angular resolution of 0.″05 (∼10 au) as part of the Atacama Large Millimeter/submillimeter Array large program, Early Planet Formation in Embedded Disks. The 1.3 mm dust continuum emission reveals that Ced110 IRS4 is a binary system with a projected separation of ∼250 au. The continuum emissions associated with the main source and its companion, named Ced110 IRS4A and IRS4B, respectively, exhibit disk-like shapes and likely arise from dust disks around the protostars. The continuum emission of Ced110 IRS4A has a radius of ∼110 au (∼0.″6) and shows bumps along its major axis with an asymmetry. The bumps can be interpreted as a shallow, ring-like structure at a radius of ∼40 au (∼0.″2) in the continuum emission, as demonstrated from two-dimensional intensity distribution models. A rotation curve analysis on the C18O and 13CO J = 2–1 lines reveals the presence of a Keplerian disk within a radius of 120 au around Ced110 IRS4A, which supports the interpretation that the dust continuum emission arises from a disk. The ring-like structure in the dust continuum emission might indicate a possible annular substructure in the surface density of the embedded disk, although the possibility that it is an apparent structure due to the optically thick continuum emission cannot be ruled out.

Funder

National Science and Technology Council (NSTC) in Taiwan

Academia Sinica Career Development Award

Independent Research Fund Denmark

JSPS KAKENHI

NAOJ ALMA Scientific Research Grant

Jefferson Scholars Foundation

Grant-in-Aid for Scientific Research

Grant-in-Aid for Transformative Research Areas

MEC ∣ Agencia Estatal de Investigación

National Research Foundation of Korea

Korea Astronomy and Space Science Institute

National Aeronautics and Space Administration

National Science Foundation

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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