Calibration and Performance of the NIKA2 camera at the IRAM 30-meter Telescope
L. Perotto, N. Ponthieu, J.-F. Mac\'ias-P\'erez, R. Adam, P. Ade, P., Andr\'e, A. Andrianasolo, H. Aussel, A. Beelen, A. Beno\^it, S. Berta, A., Bideaud, O. Bourrion, M. Calvo, A. Catalano, B. Comis, M. De Petris, F.-X., D\'esert, S. Doyle, E. F. C. Driessen, P. Garc\'ia

TL;DR
This paper evaluates the performance of the NIKA2 millimetre camera at IRAM 30-m, demonstrating its high sensitivity, stability, and mapping speed over a year of observations, enabling advanced studies of the millimetre Universe.
Contribution
The paper provides a comprehensive performance assessment of NIKA2 after one year, including calibration, beam characterization, and stability analysis under various observing conditions.
Findings
Beam FWHM of 17.6'' at 150 GHz and 11.1'' at 260 GHz.
Calibration uncertainties of about 3% at 150 GHz and 6% at 260 GHz.
Mapping speeds of 1388 and 111 arcmin²/mJy²/h at 150 and 260 GHz.
Abstract
NIKA2 is a dual-band millimetric continuum camera of 2900 Kinetic Inductance Detectors (KID), operating at and , installed at the IRAM 30-meter telescope. We present the performance assessment of NIKA2 after one year of observation using a dedicated point-source calibration method, referred to as the \emph{baseline} method. Using a large data set acquired between January 2017 and February 2018 that span the whole range of observing elevations and atmospheric conditions encountered at the IRAM 30-m telescope, we test the stability of the performance parameters. We report an instantaneous field of view (FOV) of 6.5' in diameter, filled with an average fraction of and of valid detectors at and , respectively. The beam pattern is characterized by a FWHM of and , and a beam efficiency of $77\% \pm…
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