High-contrast observations of brown dwarf companion HR 2562 B with the vector Apodizing Phase Plate coronagraph
Ben J. Sutlieff, Alexander J. Bohn, Jayne L. Birkby, Matthew A., Kenworthy, Katie M. Morzinski, David S. Doelman, Jared R. Males, Frans Snik,, Laird M. Close, Philip M. Hinz, David Charbonneau

TL;DR
This study demonstrates the effectiveness of the vector Apodizing Phase Plate coronagraph combined with advanced data processing techniques in high-contrast imaging of brown dwarf HR 2562 B, revealing detailed atmospheric properties despite observational challenges.
Contribution
We introduce a new PCA-based processing method for vAPP data and showcase its application in recovering and characterizing a brown dwarf companion.
Findings
Recovered HR 2562 B with high-contrast imaging in L-band.
Measured contrast and photometry consistent with previous studies.
Highlighted challenges and mitigation strategies for data processing.
Abstract
The vector Apodizing Phase Plate (vAPP) is a class of pupil plane coronagraph that enables high-contrast imaging by modifying the Point Spread Function (PSF) to create a dark hole of deep flux suppression adjacent to the PSF core. Here, we recover the known brown dwarf HR 2562 B using a vAPP coronagraph, in conjunction with the Magellan Adaptive Optics (MagAO) system, at a signal-to-noise of S/N = 3.04 in the lesser studied L-band regime. The data contained a mix of field and pupil-stabilised observations, hence we explored three different processing techniques to extract the companion, including Flipped Differential Imaging (FDI), a newly devised Principal Component Analysis (PCA)-based method for vAPP data. Despite the partial field-stabilisation, the companion is recovered sufficiently to measure a 3.94 m narrow-band contrast of (3.051.00) 10…
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