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Proceedings Paper

Spatial heterodyne spectroscopy: interferometric performance at any wavelength without scanning
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Paper Abstract

Spatial heterodyne spectroscopy (SHS) employing a two-beam dispersive interferometer producing a Fizeau fringe pattern having wavelength-dependent spatial frequencies is presented. The pattern is recorded on an imaging detector and Fourier transformed to recover the input stream. It is pointed out that spectrometers operating on the SHS principle can achieve the theoretical resolution limit of the gratings without scanning, retaining at the same time the large angular input tolerance and multiplexing properties of conventional scanning Fourier-transform spectrometers. Additionally, broad spectral coverages can be achieved, and field widening can be accomplished without moving parts.

Paper Details

Date Published: 1 December 1990
PDF: 10 pages
Proc. SPIE 1318, Optical Spectroscopic Instrumentation and Techniques for the 1990s: Applications in Astronomy, Chemistry, and Physics, (1 December 1990); doi: 10.1117/12.22119
Show Author Affiliations
Fred L. Roesler, Univ. of Wisconsin/Madison (United States)
John M. Harlander, Univ. of Wisconsin/Madison (United States)


Published in SPIE Proceedings Vol. 1318:
Optical Spectroscopic Instrumentation and Techniques for the 1990s: Applications in Astronomy, Chemistry, and Physics
Bernard J. McNamara; Jeremy M. Lerner, Editor(s)

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