The Near-Infrared Spectrograph (NIRSpec) on theJames WebbSpace Telescope

Author:

Böker T.ORCID,Arribas S.ORCID,Lützgendorf N.ORCID,Alves de Oliveira C.ORCID,Beck T. L.,Birkmann S.ORCID,Bunker A. J.,Charlot S.ORCID,de Marchi G.ORCID,Ferruit P.,Giardino G.ORCID,Jakobsen P.ORCID,Kumari N.ORCID,López-Caniego M.,Maiolino R.,Manjavacas E.ORCID,Marston A.ORCID,Moseley S. H.,Muzerolle J.ORCID,Ogle P.,Pirzkal N.ORCID,Rauscher B.,Rawle T.ORCID,Rix H.-W.,Sabbi E.,Sargent B.ORCID,Sirianni M.,te Plate M.,Valenti J.,Willott C. J.,Zeidler P.ORCID

Abstract

The near-infrared spectrograph (NIRSpec) on theJames WebbSpace Telescope (JWST) offers the first opportunity to use integral-field spectroscopy from space at near-infrared wavelengths. More specifically, NIRSpec’s integral-field unit can obtain spectra covering the wavelength range 0.6−5.3 μm for a contiguous 3.1″ × 3.2″ sky area at spectral resolutions ofR ≈ 100, 1000, and 2700. In this paper we describe the optical and mechanical design of the NIRSpec integral-field spectroscopy mode, together with its expected performance. We also discuss a few recommended observing strategies, some of which are driven by the fact that NIRSpec is a multipurpose instrument with a number of different observing modes, which are discussed in companion papers. We briefly discuss the data processing steps required to produce wavelength- and flux-calibrated data cubes that contain the spatial and spectral information. Lastly, we mention a few scientific topics that are bound to benefit from this highly innovative capability offered by JWST/NIRSpec.

Publisher

EDP Sciences

Subject

Space and Planetary Science,Astronomy and Astrophysics

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