Demonstration of the Wide-field Imaging Interferometer Testbed using a Calibrated Hyperspectral Image Projector

被引:3
作者
Bolcar, Matthew R. [1 ]
Leisawitz, David [1 ]
Maher, Steve [1 ]
Rinehart, Stephen [1 ]
机构
[1] NASA, Goddard Space Flight Ctr, Greenbelt, MD 20771 USA
来源
OPTICAL AND INFRARED INTERFEROMETRY III | 2012年 / 8445卷
关键词
Astronomical interferometry; Fourier-transform spectroscopy; wide-field imaging; hyperspectral image projectors;
D O I
10.1117/12.926221
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The Wide-field Imaging Interferometer testbed (WIIT) at NASA's Goddard Space Flight Center uses a dual-Michelson interferometric technique. The WIIT combines stellar interferometry with Fourier-transform interferometry to produce high-resolution spatial-spectral data over a large field-of-view. This combined technique could be employed on future NASA missions such as the Space Infrared Interferometric Telescope (SPIRIT) and the Sub-millimeter Probe of the Evolution of Cosmic Structure (SPECS). While both SPIRIT and SPECS would operate at far-infrared wavelengths, the WIIT demonstrates the dual-interferometry technique at visible wavelengths. The WIIT will produce hyperspectral image data, so a true hyperspectral object is necessary. A calibrated hyperspectral image projector (CHIP) has been constructed to provide such an object. The CHIP uses Digital Light Processing (DLP) technology to produce customized, spectrally-diverse scenes. CHIP scenes will have approximately 1.6-micron spatial resolution and the capability of producing arbitrary spectra in the band between 380 nm and 1.6 microns, with approximately 5-nm spectral resolution. Each pixel in the scene can take on a unique spectrum. Spectral calibration is achieved with an onboard fiber-coupled spectrometer. In this paper we describe the operation of the CHIP. Results from the WIIT observations of CHIP scenes will also be presented.
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页数:9
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