works on

From the 1 of 8 linked papers with an AI index.

activity
20242026
collaborators

8 papers

astro-ph.EP2026

Dust characterization of the HD 163296 disk with high-resolution multi-wavelength ALMA observations

Kiyoaki Doi, Myriam Benisty, Akimasa Kataoka +10

Context. Planets form through the growth and accumulation of dust grains in protoplanetary disks. Characterizing dust properties such as size, surface density, and temperature is k…

astro-ph.EP2026

Probing the Innermost Region of the V883 Ori Disk Using ALMA Band 1 Methanol Line Observations

Yoshihide Yamato, Shota Notsu, Rui Zhuang +2

The study uses ALMA Band 1 observations to detect methanol emission lines in the protoplanetary disk around the FU‑Ori star V883 Ori, revealing warm gaseous methanol in the innermo…

astro-ph.GA2026

Subarcsecond Multi-line Observations of NH with VLA toward the Class 0 Source IRAS 16293-2422

Yoshihide Yamato, Yuri Aikawa, Kenji Furuya +2

Ammonia (NH) is one of the key volatiles that plays a central role in nitrogen chemistry and its evolution during the epoch of star and planet formation. We present subarcsecon…

astro-ph.EP2026

Compact Hydrogen Sulfide Emission Indicates Sulfur-bearing Ice Sublimation in the Inner Disk of HD 163296

Yoshihide Yamato, Yuri Aikawa, Kenji Furuya +8

The sulfur chemistry in protoplanetary disks directly affects the composition and potential habitability of nascent planets, but its volatile inventory remains highly uncertain. He…

astro-ph.EP2026

A Protoplanet Candidate in the PDS 66 Disk Indicated by Silicon Sulfide Isotopologues

Tomohiro C. Yoshida, Felipe Alarcón, Jaehan Bae +11

Despite observational progress in planet formation, the stage in which planetesimals grow into planets remains poorly understood. During this phase, protoplanets may develop gaseou…

astro-ph.EP2025

Winding Motion of Spirals in a Gravitationally Unstable Protoplanetary Disk

Tomohiro C. Yoshida, Hideko Nomura, Kiyoaki Doi +5

The discovery of wide-orbit giant exoplanets has posed a challenge to our conventional understanding of planet formation by coagulation of dust grains and planetesimals, and subseq…