First Results from High Angular Resolution ALMA Observations Toward the HL Tau Region
Abstract
We present Atacama Large Millimeter/submillimeter Array (ALMA) observations from the 2014 Long Baseline Campaign in dust continuum and spectral line emission from the HL Tau region. The continuum images at wavelengths of 2.9, 1.3, and 0.87 mm have unprecedented angular resolutions of 0.075 arcseconds (10 AU) to 0.025 arcseconds (3.5 AU), revealing an astonishing level of detail in the circumstellar disk surrounding the young solar analogue HL Tau, with a pattern of bright and dark rings observed at all wavelengths. By fitting ellipses to the most distinct rings, we measure precise values for the disk inclination (46.72pm0.05 degrees) and position angle (+138.02pm0.07 degrees). We obtain a high-fidelity image of the 1.0 mm spectral index (), which ranges from in the optically-thick central peak and two brightest rings, increasing to 2.3-3.0 in the dark rings. The dark rings are not devoid of emission, we estimate a grain emissivity index of 0.8 for the innermost dark ring and lower for subsequent dark rings, consistent with some degree of grain growth and evolution. Additional clues that the rings arise from planet formation include an increase in their central offsets with radius and the presence of numerous orbital resonances. At a resolution of 35 AU, we resolve the molecular component of the disk in HCO+ (1-0) which exhibits a pattern over LSR velocities from 2-12 km/s consistent with Keplerian motion around a ~1.3 solar mass star, although complicated by absorption at low blue-shifted velocities. We also serendipitously detect and resolve the nearby protostars XZ Tau (A/B) and LkHa358 at 2.9 mm.
Keywords
Cite
@article{arxiv.1503.02649,
title = {First Results from High Angular Resolution ALMA Observations Toward the HL Tau Region},
author = {ALMA Partnership and C. L. Brogan and L. M. Perez and T. R. Hunter and W. R. F. Dent and A. S. Hales and R. Hills and S. Corder and E. B. Fomalont and C. Vlahakis and Y. Asaki and D. Barkats and A. Hirota and J. A. Hodge and C. M. V. Impellizzeri and R. Kneissl and E. Liuzzo and R. Lucas and N. Marcelino and S. Matsushita and K. Nakanishi and N. Phillips and A. M. S. Richards and I. Toledo and R. Aladro and D. Broguiere and J. R. Cortes and P. C. Cortes and D. Espada and F. Galarza and D. Garcia-Appadoo and L. Guzman-Ramirez and E. M. Humphreys and T. Jung and S. Kameno and R. A. Laing and S. Leon and G. Marconi and A. Mignano and B. Nikolic and L. -A. Nyman and M. Radiszcz and A. Remijan and J. A. Rodon and T. Sawada and S. Takahashi and R. P. J. Tilanus and B. Vila Vilaro and L. C. Watson and T. Wiklind and E. Akiyama and E. Chapillon and I. de Gregorio-Monsalvo and J. Di Francesco and F. Gueth and A. Kawamura and C. -F. Lee and Q. Nguyen Luong and J. Mangum and V. Pietu and P. Sanhueza and K. Saigo and S. Takakuwa and C. Ubach and T. van Kempen and A. Wootten and A. Castro-Carrizo and H. Francke and J. Gallardo and J. Garcia and S. Gonzalez and T. Hill and T. Kaminski and Y. Kurono and H. -Y. Liu and C. Lopez and F. Morales and K. Plarre and G. Schieven and L. Testi and L. Videla and E. Villard and P. Andreani and J. E. Hibbard and K. Tatematsu},
journal= {arXiv preprint arXiv:1503.02649},
year = {2016}
}
Comments
11 pages, 5 figures, 2 tables, accepted for publication in the Astrophysical Journal Letters