High-resolution near-infrared images and models of the circumstellar disk in HH 30

Angela S. Cotera, Barbara A. Whitney, Erick Young, Michael J. Wolff, Kenneth Wood, Matthew Povich, Glenn Schneider, Marcia Rieke, Rodger Thompson

Research output: Contribution to journalArticle

90 Scopus citations

Abstract

We present Hubble Space Telescope near-infrared camera and multiobject spectrometer observations of the reflection nebulosity associated with the T Tauri star HH 30. The images show the scattered-light pattern characteristic of a highly inclined, optically thick disk with a prominent dust lane whose width decreases with increasing wavelength. The reflected nebulosity exhibits a lateral asymmetry in the upper lobe on the opposite side to that reported in previously published Wide Field Planetary Camera 2 images. The radiation transfer model that most closely reproduces the data has a flared accretion disk with dust grains larger than standard interstellar medium grains by a factor of approximately 2.1. A single hot spot on the stellar surface provides the necessary asymmetry to fit the images and is consistent with previous modeling of the light curve and images. Photometric analysis results in an estimated extinction of Av ≳ 80; however, since the photometry measures only scattered light rather than direct stellar flux, this a lower limit. The radiative transfer models require an extinction of Av = 7900.

Original languageEnglish (US)
Pages (from-to)958-969
Number of pages12
JournalAstrophysical Journal
Volume556
Issue number2 PART 1
DOIs
StatePublished - Aug 1 2001

Keywords

  • Accretion, accretion disks
  • Radiative transfer
  • Stars: individual (HH 30)
  • Stars: pre-main-sequence
  • Stars: rotation
  • Stars: spots

ASJC Scopus subject areas

  • Astronomy and Astrophysics
  • Space and Planetary Science

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    Cotera, A. S., Whitney, B. A., Young, E., Wolff, M. J., Wood, K., Povich, M., Schneider, G., Rieke, M., & Thompson, R. (2001). High-resolution near-infrared images and models of the circumstellar disk in HH 30. Astrophysical Journal, 556(2 PART 1), 958-969. https://doi.org/10.1086/321627