Disk Illumination and Jet Variability of the Herbig Ae Star HD 163296 Using Multi-Epoch HST/STIS Optical, Near-IR, and Radio Imagery and Spectroscopy
Evan A. Rich, John P. Wisniewski, Michael L. Sitko, Carol A. Grady,, John J. Tobin, Misato Fukagawa

TL;DR
This study uses multi-epoch HST, optical, near-IR, and radio observations to analyze disk structures, variability, and jet activity in the HD 163296 system, revealing dynamic features and potential common mechanisms for observed phenomena.
Contribution
It provides new multi-epoch imaging and spectroscopy data that identify a fourth disk ring, measure its scale height, and analyze variability and shadowing events, offering insights into disk dynamics and star-disk interactions.
Findings
Identified a fourth disk ring at 330 au with a scale height of 64 au.
Observed surface brightness variations and azimuthal asymmetries in the disk on <3 month timescales.
Detected a dipper event indicating inner disk shadowing within 0.5 au from the star.
Abstract
We present two new epochs of Hubble Space Telescope/Space Telescope Imaging Spectrograph coronagraphic imaging, along with multi-epoch optical, near-IR, and radio monitoring, of the HD 163296 system. We find ansae features identified in earlier epoch HST imagery are a 4th ring, that resides at a semi-major axis distance of 3.25" (330 au). We determine the scale height of the dust is 64 au at a radial distance of 330 au. We observe surface brightness variations in the 4th ring on <3 month timescales, including large-scale, azimuthally asymmetric changes. This variability resembles earlier studies of the innermost disk ring (0.66", 67 au), suggesting a common origin. We find no evidence for the ejection of new HH-knots predicted to occur in 2018. Moreover, our non-detection of older HH-knots indicate the knots could be experiencing less shock-heating. We also detect one clear dipper event…
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