Flux calibrated emission line imaging of extended sources using GTC/OSIRIS Tunable Filters
Y. D. Mayya (1), D. Rosa Gonzalez (1), O. Vega (1), J. Mendez-Abreu, (2,3), R. Terlevich (1,4), E. Terlevich (1,4), E. Bertone (1), L. H., Rodriguez-Merino (1), C. Munoz-Tunon (2,3), J. M. Rodriguez-Espinosa (2,3),, J. Sanchez Almeida (2,3), J. A. L. Aguerri (2,3) ((1) INAOE

TL;DR
This paper demonstrates how to generate accurate, flux-calibrated emission line maps of extended astronomical sources using GTC/OSIRIS tunable filters, overcoming wavelength variation challenges.
Contribution
It introduces a method for flux calibration of emission line images with tunable filters, achieving high accuracy without additional calibration images.
Findings
Achieved ~11% flux accuracy in Halpha emission lines.
Developed a flux calibration method using SDSS stellar spectra.
Created a user-friendly IRAF script for flux calibration.
Abstract
We investigate the utility of the Tunable Filters (TFs) for obtaining flux calibrated emission line maps of extended objects such as galactic nebulae and nearby galaxies, using the OSIRIS instrument at the 10.4-m GTC. Despite a relatively large field of view of OSIRIS (8'x8'), the change in the wavelength across the field (~80 Ang) and the long-tail of Tunable Filter (TF) spectral response function, are hindrances for obtaining accurate flux calibrated emission-line maps of extended sources. The purpose of this article is to demonstrate that emission-line maps useful for diagnostics of nebula can be generated over the entire field of view of OSIRIS, if we make use of theoretically well-understood characteristics of TFs. We have successfully generated the flux-calibrated images of the nearby, large late-type spiral galaxy M101 in the emission lines of Halpha, [NII]6583, [SII]6716 and…
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