Published March 11, 2021 | Version v1
Dataset Open

Photoevaporative Dispersal of Protoplanetary Disks around Evolving Intermediate-mass Stars

  • 1. Kurume University
  • 2. Tokyo Institute of Technology
  • 3. University of Leeds
  • 4. The University of Tokyo

Description

We aim to understand the effect of stellar evolution on the evolution of protoplanetary disks. We focus in particular on the disk evolution around intermediate-mass (IM) stars, which evolve more rapidly than low-mass ones. We numerically solve the long-term evolution of disks around 0.5–5 M☉ stars considering viscous accretion and photoevaporation (PE) driven by stellar far-ultraviolet (FUV), extreme-ultraviolet (EUV), and X-ray emission. We also take stellar evolution into account and consider the time evolution of the PE rate. We find that the FUV, EUV, and X-ray luminosities of IM stars evolve by orders of magnitude within a few million years, along with the time evolution of stellar structure, stellar effective temperature, or accretion rate. Therefore, the PE rate also evolves with time by orders of magnitude, and we conclude that stellar evolution is crucial for the disk evolution around IM stars.

Notes

Table 1 of Kunitomo et al. (2021), ApJ, 909, 109.

Files

table1.txt

Files (72.0 kB)

Name Size Download all
md5:1350bf9bc63e2d8c0d72db167e417ade
72.0 kB Preview Download

Additional details

Related works

Is supplement to
Journal article: 10.3847/1538-4357/abdb2a (DOI)