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Prototype imaging spectrograph for coronagraphic exoplanet studies (PISCES) for WFIRST/AFTA
Author(s) -
Qian Gong,
Michael W. McElwain,
Bradford W. Greeley,
Bryan Grammer,
Catherine T. Marx,
Nargess Memarsadeghi,
Karl R. Stapelfeldt,
George Hilton,
Jorge Llop Sayson,
Marshall D. Perrin,
Richard Demers,
Hong Tang,
Brian Kern,
Janan Ferdosi
Publication year - 2015
Publication title -
proceedings of spie, the international society for optical engineering/proceedings of spie
Language(s) - English
Resource type - Conference proceedings
SCImago Journal Rank - 0.192
H-Index - 176
eISSN - 1996-756X
pISSN - 0277-786X
DOI - 10.1117/12.2187122
Subject(s) - coronagraph , exoplanet , spectrograph , apodization , telescope , physics , optics , integral field spectrograph , achromatic lens , remote sensing , planet , astronomy , geology , spectral line
Prototype Imaging Spectrograph for Coronagraphic Exoplanet Studies (PISCES) is a lenslet array based integral field spectrometer (IFS) designed for high contrast imaging of extrasolar planets. PISCES will be used to advance the technology readiness of the high contrast IFS baselined on the Wide-Field InfraRed Survey Telescope/Astrophysics Focused Telescope Assets (WFIRST-AFTA) coronagraph instrument. PISCES will be integrated into the high contrast imaging testbed (HCIT) at the Jet Propulsion Laboratory (JPL) and will work with both the Hybrid Lyot Coronagraph (HLC) and the Shaped Pupil Coronagraph (SPC) configurations. We discuss why the lenslet array based IFS was selected for PISCES. We present the PISCES optical design, including the similarities and differences of lenslet based IFSs to normal spectrometers, the trade-off between a refractive design and reflective design, as well as the specific function of our pinhole mask on the back surface of the lenslet array to reduce the diffraction from the edge of the lenslets. The optical analysis, alignment plan, and mechanical design of the instrument will be discussed.

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