English

K-band High-Resolution Spectroscopy of Embedded Massive Protostars

Astrophysics of Galaxies 2021-05-19 v1

Abstract

A classical paradox in high-mass star formation is that powerful radiation pressure can halt accretion, preventing further growth of a central star. Disk accretion has been proposed to solve this problem, but the disks and the accretion process in high-mass star formation are poorly understood. We executed high-resolution (RR=35,000-70,000) iSHELL spectroscopy in KK-band for eleven high-mass protostars. Br-γ\gamma emission was observed toward eight sources, and the line profiles for most of these sources are similar to those of low-mass PMS stars. Using an empirical relationship between the Br-γ\gamma and accretion luminosities, we tentatively estimate disk accretion rates ranging from \lesssim108^{-8} and \sim104^{-4} MM_\odot yr1^{-1}. These low-mass-accretion rates suggest that high-mass protostars gain more mass via episodic accretion as proposed for low-mass protostars. Given the detection limits, CO overtone emission (vv=2-0 and 3-1), likely associated with the inner disk region (r100r \ll 100 au), was found towards two sources. This low-detection rate compared with Br-γ\gamma emission is consistent with previous observations. Ten out of the eleven sources show absorption at the vv=0-2 R(7)R(14){\rm R(7)-R(14)} CO R-branch. Most of them are either blueshifted or redshifted, indicating that the absorption is associated with an outflow or an inflow with a velocity of up to 50\sim50 km s1^{-1}. Our analysis indicates that the absorption layer is well thermalized (and therefore nH2106n_{\mathrm H_2} \gtrsim 10^6 cm3^{-3}) at a single temperature of typically 100-200 K, and located within 200-600 au of the star.

Keywords

Cite

@article{arxiv.2103.07958,
  title  = {K-band High-Resolution Spectroscopy of Embedded Massive Protostars},
  author = {Tien-Hao Hsieh and Michihiro Takami and Michael S. Connelley and Sheng-Yuan Liu and Yu-Nung Su and Naomi Hirano and Motohide Tamura and Masaaki Otsuka and Jennifer L. Karr and Tae-Soo Pyo},
  journal= {arXiv preprint arXiv:2103.07958},
  year   = {2021}
}

Comments

18 page, 7 figures, accepted to ApJ

R2 v1 2026-06-24T00:07:51.852Z