NICMOS Status
Roelof S. de Jong, Santiago Arribas, Elizabeth Barker, Louis E. Bergeron, Ralph C. Bohlin, Daniela Calzetti, Ilana Dashevsky, Mark Dickinson, Anton M. Koekemoer, Sangeeta Malhotra, Bahram Mobasher, Keith S. Noll, Adam G. Riess, Alfred B. Schultz, Megan L. Sosey, Thomas Wheeler, Tommy Wiklind, Chun Xu
Abstract
We provide an overview of the most important calibration aspects of the NICMOS instrument on board of HST. We describe the performance of the instrument after the installation of the NICMOS Cooling System, and show that the behavior of the instrument has become very stable and predictable. We detail the improvements made to the NICMOS pipeline and outline plans for future developments. The derivation of the absolute photometric zero-point calibration is described in detail. Finally, we describe and quantify a newly discovered count-rate dependent non-linearity in the NICMOS cameras. This new non-linearity is distinctly different from the total count dependent non-linearity that is well known for near-infrared detectors. We show that the non-linearity has a power law behavior, with pixels with high system, or vice versa, pixels with low count rate detecting slightly less than expected. The effect has a wavelength dependence with observations at the shortest wavelengths being the most affected (~0.05-0.1 mag per dex flux change at ~1 micron, 0.03 mag per dex at 1.6 micron).
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