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Pre-Main-Sequence Brackett Emitters In The Apogee Dr17 Catalog: Line Strengths And Physical Properties Of Accretion Columns
Journal
The Astrophysical Journal
Date Issued
2022-12-30
Author(s)
Hunter Campbell
Elliott Khilfeh
Kevin R. Covey
Marina Kounkel
Richard Ballantyne
Sabrina Corey
Carlos G. Román-Zúñiga
Jesús Hernández
Ezequiel Manzo Martínez
Karla Peña Ramírez
Alexandre Roman-Lopes
Keivan G. Stassun
Guy S. Stringfellow
S. Drew Chojnowski
Valeria Ramírez-Preciado
Jinyoung Serena Kim
Javier Serna
Amelia M. Stutz
Ricardo López-Valdivia
Genaro Suárez
Jason E. Ybarra
Penélope Longa-Peña
José G. Fernández-Trincado
WoS ID
WOS:000905843400001
Abstract
Abstract Very young ( t ≲ 10 Myr) stars possess strong magnetic fields that channel ionized gas from the interiors of their circumstellar disks to the surface of the star. Upon impacting the stellar surface, the shocked gas recombines and emits hydrogen spectral lines. To characterize the density and temperature of the gas within these accretion streams, we measure equivalent widths of Brackett (Br) 11–20 emission lines detected in 1101 APOGEE spectra of 326 likely pre-main-sequence accretors. For sources with multiple observations, we measure median epoch-to-epoch line strength variations of 10% in Br11 and 20% in Br20. We also fit the measured line ratios to predictions of radiative transfer models by Kwan & Fischer. We find characteristic best-fit electron densities of n e = 10 11 –10 12 cm −3 , and excitation temperatures that are inversely correlated with electron density (from T ∼ 5000 K for n e ∼ 10 12 cm −3 to T ∼ 12,500 K at n e ∼ 10 11 cm −3 ). These physical parameters are in good agreement with predictions from modeling of accretion streams that account for the hydrodynamics and radiative transfer within the accretion stream. We also present a supplementary catalog of line measurements from 9733 spectra of 4255 Brackett emission-line sources in the APOGEE Data Release 17 data set.
OCDE Subjects
Quartile (Date Issued)
Q1
License
acceso abierto
Open Science Path