Published July 20, 2010 | Version Published
Book Section - Chapter Open

The Infrared Imaging Spectrograph (IRIS) for TMT: the science case

  • 1. ROR icon University of California, Irvine
  • 2. ROR icon University of California, Los Angeles
  • 3. ROR icon California Institute of Technology
  • 4. ROR icon University of California, Berkeley
  • 5. ROR icon Herzberg Institute of Astrophysics
  • 6. ROR icon Lawrence Livermore National Laboratory

Abstract

The InfraRed Imaging Spectrograph (IRIS) is a first-light instrument being designed for the Thirty Meter Telescope (TMT). IRIS is a combination of an imager that will cover a 16. 4 field of view at the diffraction limit of TMT (4 mas sampling), and an integral field unit spectrograph that will sample objects at 4-50 mas scales. IRIS will open up new areas of observational parameter space, allowing major progress in diverse fields of astronomy. We present the science case and resulting requirements for the performance of IRIS. Ultimately, the spectrograph will enable very well-resolved and sensitive studies of the kinematics and internal chemical abundances of high-redshift galaxies, shedding light on many scenarios for the evolution of galaxies at early times. With unprecedented imaging and spectroscopy of exoplanets, IRIS will allow detailed exploration of a range of planetary systems that are inaccessible with current technology. By revealing details about resolved stellar populations in nearby galaxies, it will directly probe the formation of systems like our own Milky Way. Because it will be possible to directly characterize the stellar initial mass function in many environments and in galaxies outside of the the Milky Way, IRIS will enable a greater understanding of whether stars form differently in diverse conditions. IRIS will reveal detailed kinematics in the centers of low-mass galaxies, allowing a test of black hole formation scenarios. Finally, it will revolutionize the characterization of reionization and the first galaxies to form in the universe.

Additional Information

© 2010 SPIE The International Society for Optical Engineering. The authors gratefully acknowledge the support of the TMT partner institutions. They are the Association of Canadian Universities for Research in Astronomy (ACURA), the California Institute of Technology and the University of California. This work was supported as well by the Gordon and Betty Moore Foundation, the Canada Foundation for Innovation, the Ontario Ministry of Research and Innovation, the National Research Council of Canada, Natural Sciences and Engineering Research Council of Canada, the British Columbia Knowledge Development Fund, the Association of Universities for Research in Astronomy (AURA), the U.S. National Science Foundation, and the National Astronomical Observatory of Japan (NAOJ).

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Identifiers

Eprint ID
71806
Resolver ID
CaltechAUTHORS:20161108-104856931

Funding

Thirty Meter Telescope Project
Association of Canadian Universities for Research in Astronomy (ACURA)
Caltech
University of California
Gordon and Betty Moore Foundation
Canada Foundation for Innovation
Ontario Ministry of Research and Innovation
National Research Council of Canada
Natural Sciences and Engineering Research Council of Canada (NSERC)
British Columbia Knowledge Development Fund
Association of Universities for Research in Astronomy (AURA)
NSF
National Astronomical Observatory of Japan

Dates

Created
2016-11-09
Created from EPrint's datestamp field
Updated
2021-11-11
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Caltech Custom Metadata

Caltech groups
Thirty Meter Telescope
Series Name
Proceedings of SPIE
Series Volume or Issue Number
7735