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Data Reduction Pipeline for the CHARIS Integral-Field Spectrograph I: Detector Readout Calibration and Data Cube ExtractionWe present the data reduction pipeline for CHARIS, a high-contrast integral-field spectrograph for the Subaru Telescope. The pipeline constructs a ramp from the raw reads using the measured nonlinear pixel response and reconstructs the data cube using one of three extraction algorithms: aperture photometry, optimal extraction, or chi-squared fitting. We measure and apply both a detector flatfield and a lenslet flatfield and reconstruct the wavelength- and position-dependent lenslet point-spread function (PSF) from images taken with a tunable laser. We use these measured PSFs to implement a chi-squared-based extraction of the data cube, with typical residuals of approximately 5 percent due to imperfect models of the under-sampled lenslet PSFs. The full two-dimensional residual of the chi-squared extraction allows us to model and remove correlated read noise, dramatically improving CHARIS's performance. The chi-squared extraction produces a data cube that has been deconvolved with the line-spread function and never performs any interpolations of either the data or the individual lenslet spectra. The extracted data cube also includes uncertainties for each spatial and spectral measurement. CHARIS's software is parallelized, written in Python and Cython, and freely available on github with a separate documentation page. Astrometric and spectrophotometric calibrations of the data cubes and PSF subtraction will be treated in a forthcoming paper.
Document ID
20180003023
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Brandt, Timothy D.
(California Univ. Santa Barbara, CA, United States)
Rizzo, Maxime
(Universities Space Research Association Greenbelt, MD, United States)
Groff, Tyler
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Chilcote, Jeffrey
(Stanford Univ. Palo Alto, CA, United States)
Greco, Johnny P.
(Princeton Univ. NJ, United States)
Kasdin, N. Jeremy
(Princeton Univ. NJ, United States)
Limbach, Mary Anne
(Princeton Univ. NJ, United States)
Galvin, Michael
(Princeton Univ. NJ, United States)
Loomis, Craig
(Princeton Univ. NJ, United States)
Knapp, Gillian
(Princeton Univ. NJ, United States)
McElwain, Michael W.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Jovanovic, Nemanja
(California Inst. of Technology Pasadena, CA, United States)
Currie, Thayne
(National Astronomical Observatory Hilo, HI, United States)
Mede, Kyle
(Rakuten, Inc. Tokyo, Japan)
Tamura, Motohide
(Tokyo Univ. Hongo, Japan)
Takato, Naruhisa
(National Astronomical Observatory Hilo, HI, United States)
Hayashi, Masahiko
(National Astronomical Observatory Tokyo, Japan)
Date Acquired
May 25, 2018
Publication Date
November 24, 2017
Publication Information
Publication: Journal of Astronomical Telescopes, Instruments, and Systems
Publisher: SPIE
Volume: 3
Issue: 4
ISSN: 2329-4124
e-ISSN: 2329-4221
Subject Category
Astronomy
Report/Patent Number
GSFC-E-DAA-TN55769
Funding Number(s)
CONTRACT_GRANT: NNH15CO48B
Distribution Limits
Public
Copyright
Other

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