The instrumental polarization of the Nasmyth focus polarimetric differential imager NAOS/CONICA (NACO) at the VLT - Implications for time-resolved polarimetric measurements of Sgr A*
G. Witzel, A. Eckart, R. M. Buchholz, M. Zamaninasab, R. Lenzen, R., Sch\"odel, C. Araujo, N. Sabha, M. Bremer, V. Karas, C. Straubmeier, K., Muzic

TL;DR
This study calibrates and models the instrumental polarization of the VLT's NACO system in the Ks-band, enabling more accurate polarimetric measurements of Sgr A* and other sources with a 1% degree accuracy.
Contribution
The paper introduces a detailed Mueller formalism-based model of NACO's instrumental polarization, improving calibration accuracy for polarimetric observations.
Findings
Instrumental polarization depends on telescope pointing, reaching up to 4%.
Calibration accuracy of polarization degree improved to 1%.
Results are consistent with previous methods, not affecting relativistic models of Sgr A*.
Abstract
We report on the results of calibrating and simulating the instrumental polarization properties of the ESO VLT adaptive optics camera system NAOS/CONICA (NACO) in the Ks-band. We use the Stokes/Mueller formalism for metallic reflections to describe the instrumental polarization. The model is compared to standard-star observations and time-resolved observations of bright sources in the Galactic center. We find the instrumental polarization to be highly dependent on the pointing position of the telescope and about 4% at maximum. We report a polarization angle offset of 13.28{\deg} due to a position angle offset of the half-wave plate that affects the calibration of NACO data taken before autumn 2009. With the new model of the instrumental polarization of NACO it is possible to measure the polarization with an accuracy of 1% in polarization degree. The uncertainty of the polarization angle…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Adaptive optics and wavefront sensing · Calibration and Measurement Techniques
