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The Infrared Spectrograph (IRS) on the <i>Spitzer Space Telescope</i>

The Astrophysical Journal Supplement Series · 2004 · Vol. 154(1) · pp. 18–24
J. R. HouckThomas L. RoelligJeffrey E. Van CleveW. J. ForrestT. HerterCharles R. LawrenceK. MatthewsH. J. ReitsemaB. T. SoiferD. M. WatsonDan W. WeedmanMarty HuisjenJ. TroeltzschD. J. BarryJ. Bernard‐SalasC. E. BlackenBernhard R. BrandlV. CharmandarisD. DevostG. E. GullPeter J. HallC. HendersonS. J. U. HigdonBruce PirgerJ. SchoenwaldG. C. SloanK. I. UchidaP. N. AppletonL. ArmusM. BurgdorfS. B. Fajardo‐AcostaCarl J. GrillmairJames G. IngallsP. MorrisHarry I. Teplitz

Abstract

The Infrared Spectrograph (IRS) is one of three science instruments on the Spitzer Space Telescope. The IRS comprises four separate spectrograph modules covering the wavelength range from 5.3 to 38 m with spectral resolutions, R k=k 90 and 600, and it was optimized to take full advantage of the very low background in the space environment. The IRS is performing at or better than the prelaunch predictions. An autonomous target acquisition capability enables the IRS to locate the mid-infrared centroid of a source, providing the information so that the spacecraft can accurately offset that centroid to a selected slit. This feature is particularly useful when taking spectra of sources with poorly known coordinates. An automated data-reduction pipeline has been developed at the Spitzer Science Center.

Stellar, planetary, and galactic studiesAstrophysics and Star Formation StudiesAstro and Planetary ScienceSpectrographSpitzer Space TelescopeSpacecraftCentroidPhysicsInfraredTelescopeOffset (computer science)James Webb Space TelescopeSpectral resolution
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References
The <i>Spitzer Space Telescope</i> Mission
The Astrophysical Journal Supplement Series · 2004 · 2,706 citations
The Infrared Array Camera (IRAC) for the <i>Spitzer Space Telescope</i>
The Astrophysical Journal Supplement Series · 2004 · 3,158 citations
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