Improved Orbital Constraints and H$\alpha$ Photometric Monitoring of the Directly Imaged Protoplanet Analog HD 142527 B
William O. Balmer, Katherine B. Follette, Laird M. Close, Jared R., Males, Robert J. De Rosa, J\'ea I. Adams Redai, Alex Watson, Alycia J., Weinberger, Katie M. Morzinski, Julio Morales, Kimberly Ward-Duong and, Laurent Pueyo

TL;DR
This study monitors the orbit and accretion activity of the protoplanet analog HD 142527 B over five years, revealing variable accretion rates and orbital characteristics close to periastron, advancing understanding of protoplanet formation.
Contribution
First long-term H-alpha monitoring of HD 142527 B with high astrometric precision, constraining its orbit and accretion variability, and calibrating instrumentation against Keck data.
Findings
HD 142527 B is near periastron passage.
Accretion rate varies over time.
Companion's orbit is significantly misinclined.
Abstract
Companions embedded in the cavities of transitional circumstellar disks have been observed to exhibit excess luminosity at H, an indication that they are actively accreting. We report 5 years (2013-2018) of monitoring of the position and H excess luminosity of the embedded, accreting low-mass stellar companion HD 142527 B from the MagAO/VisAO instrument. We use pyklip, a python implementation of the Karhounen-Loeve Image Processing algorithm, to detect the companion. Using pyklip forward modeling, we constrain the relative astrometry to precision and achieve sufficient photometric precision ( error) to detect changes in the H contrast of the companion over time. In order to accurately determine the relative astrometry of the companion, we conduct an astrometric calibration of the MagAO/VisAO camera against 20 years of…
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