Mass accretion process to the forming first star

Takashi Hosokawa, Kazuyuki Omukai, Harold W. Yorke

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

The final mass of the first star is fixed when mass accretion to a protostar ceases. We report our recent 2-dimensional radiation-hydrodynamic simulations of the mass accretion process to the primordial protostar. The protostellar evolution is also simultaneously calculated by solving the stellar interior structure. Our preliminary calculation shows that a circumstellar disk forms around the primordial protostar. The disk is almost fully molecular, and surrounded by warmer neutral envelope. Mass accretion to the star takes place via this accretion disk at high rates exceeding several × 10-3 Mȯ yr-1. With such high accretion rates, total luminosity of the protostar approaches the Eddington luminosity before the protostar reaches the zero-age main sequence stage. Radiation pressure exerted on gas accretion envelope should regulate the mass accretion when the protostellar mass exceeds 80 Mȯ, which is before the stellar UV radiation influences the accretion flow.

Original languageEnglish
Title of host publicationDeciphering the Ancient Universe with Gamma-Ray Bursts
Pages327-329
Number of pages3
DOIs
Publication statusPublished - 2010 Dec 13
Externally publishedYes
EventInternational Symposium "Deciphering the Ancient Universe with Gamma-Ray Bursts" - Kyoto, Japan
Duration: 2010 Apr 192010 Apr 23

Publication series

NameAIP Conference Proceedings
Volume1279
ISSN (Print)0094-243X
ISSN (Electronic)1551-7616

Other

OtherInternational Symposium "Deciphering the Ancient Universe with Gamma-Ray Bursts"
CountryJapan
CityKyoto
Period10/4/1910/4/23

Keywords

  • Circumstellar Disk
  • First stars
  • Mass Accretion

ASJC Scopus subject areas

  • Physics and Astronomy(all)

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  • Cite this

    Hosokawa, T., Omukai, K., & Yorke, H. W. (2010). Mass accretion process to the forming first star. In Deciphering the Ancient Universe with Gamma-Ray Bursts (pp. 327-329). (AIP Conference Proceedings; Vol. 1279). https://doi.org/10.1063/1.3509299