RW Aur A : SpeX Spectral Evidence for Differentiated Planetesimal Formation, Migration and Destruction in an 3 Myr Old Excited CTTS System
C.M. Lisse, M.L. Sitko, S.J. Wolk, H.M. G\"unther, S. Brittain, J.D., Green, J. Steckloff, B. Johnson, C.C. Espaillat, M. Koutoukali, S.Y. Moorman,, A.P. Jackson

TL;DR
This study presents spectral monitoring of RW Aur A revealing complex, variable components indicating a dynamically excited system forming and destroying planetesimals within an asymmetric accretion disk, contrasting with its stable binary companion RW Aur B.
Contribution
It provides detailed spectral evidence for differentiated planetesimal formation, migration, and destruction in a young, excited CTTS system over 13 years.
Findings
Identification of five distinct spectral components and their temporal evolution.
Evidence for a dynamically excited system forming and destroying planetesimals.
Contrast with stable spectral features of the binary companion RW Aur B.
Abstract
We present 2007 - 2020 SpeX VISNIR spectral monitoring of the highly variable RW Aur A CTTS. We find direct evidence for a highly excited, IR bright, asymmetric, and time variable system. Comparison of the spectral and temporal trends found determines 5 different components: (1) a stable continuum from 0.7 - 1.3 um, with approx color temperature 4000K, produced by the CTTS photospheric surface; (2) variable hydrogen emission lines emitted from hot excited hydrogen in the CTTSs protostellar atmosphere/accretion envelope; (3) hot CO gas in the CTTSs protostellar atmosphere/accretion envelope; (4) highly variable 1.8-5.0 um thermal continuum emission with color temperature ranging from 1130 to 1650K, due to a surrounding accretion disk that is spatially variable and has an inner wall at r = 0.04 AU and T = 1650K, and outer edges at approx 1200K; and (5) transient, bifurcated signatures of…
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