IP Library Granted Patent US 8,339,600
Granted Patent B2
US 8,339,600 · App. 12/829,816 · Granted Dec 25, 2012

Dual waveband compact catadioptric imaging spectrometer

Assignee: Lawrence Livermore National Security, LLC
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Quick Facts
Patent No.
US 8,339,600
App. No.
12/829,816
Granted
Dec 25, 2012
Kind
B2
Abstract

A catadioptric dual waveband imaging spectrometer that covers the visible through short-wave infrared, and the midwave infrared spectral regions, dispersing the visible through shortwave infrared with a zinc selenide grating and midwave infrared with a sapphire prism. The grating and prism are at the cold stop position, enabling the pupil to be split between them. The spectra for both wavebands are focused onto the relevant sections of a single dual waveband detector. Spatial keystone distortion is controlled to less than one tenth of a pixel over the full wavelength range, facilitating the matching of the spectra in the midwave infrared with the shorter wavelength region.

Claims (41)

1. A dual waveband imaging spectrometer, comprising:

an entrance slit for transmitting light,

a first dioptric lens,

a mirror,

a dispersing prism with a reflective coating,

an immersion grating with a reflective coating,

a second dioptric lens, and

a dual waveband detector;

said entrance slit, said first dioptric lens, said mirror, said dispersion prism, said immersion grating, said second dioptric lens, and said detector array positioned wherein

said entrance slit transmits light to said first dioptric lens, which refracts light to said mirror, which reflects light back through said first dioptric lens to said dispersing prism and said immersion grating, and dispersed dual waveband light is focused through said first dioptric lens and said second dioptric lens to said dual waveband detector.

2. The dual waveband imaging spectrometer of claim 1 wherein said immersion grating includes a refractive face with curvature and disperses a wavelength, and wherein said curvature of said refractive face provides the necessary power to form an achromatic correction with the said dioptric lenses and over said wavelength range of the immersion grating.

3. The dual waveband imaging spectrometer of claim 2 wherein said immersion grating includes a focal surface and wherein said curvature of the said dispersion grating is adjusted to provide the correct power to form an achromatic correction with the said dioptric lenses, and said curvature of the reflective surface positions the focal surface coincident with that from said immersion grating.

4. A dual waveband imaging spectrometer, comprising:

an entrance slit for transmitting light,

a first dioptric lens,

a mirror,

a first immersion grating with a reflective coating,

a second immersion grating with a reflective coating,

a second dioptric lens, and

a dual waveband detector;

said entrance slit, said first dioptric lens, said mirror, said first immersion grating, said second immersion grating, said second dioptric lens, and said detector array positioned wherein

said entrance slit transmits light to said first dioptric lens, which refracts light to said mirror, which reflects light back through said first dioptric lens to said first immersion grating and said second immersion grating, and dispersed dual waveband light is focused through said first dioptric lens and said second dioptric lens to said dual waveband detector.

5. A dual waveband imaging spectrometer, comprising:

an entrance slit for transmitting light,

a first dioptric lens,

a mirror,

a first dispersing prism with a reflective coating,

an second dispersing prism with a reflective coating,

a second dioptric lens, and

a dual waveband detector;

said entrance slit, said first dioptric lens, said mirror, said first dispersing prism, said second dispersing prism, said second dioptric lens, and said detector array positioned wherein

said entrance slit transmits light to said first dioptric lens, which refracts light to said mirror, which reflects light back through said first dioptric lens to said first dispersing prism and said second dispersing prism, and dispersed dual waveband light is focused through said first dioptric lens and said second dioptric lens to said dual waveband detector.

6. A dual waveband imaging spectrometer, comprising:

an entrance slit for transmitting light,

a catadioptric lens having a back surface with a top part and a lower part, wherein said top part of said back surface is covered with a reflective coating,

a dispersing prism with a reflective coating,

an immersion grating with a reflective coating,

a second dioptric lens, and

a dual waveband detector;

said entrance slit, said catadioptric lens, said mirror, said dispersion prism, said immersion grating, said second dioptric lens, and said detector array are positioned wherein

said entrance slit transmits light to said catadioptric lens, which reflects light from its said back surface with its said top part reflective coating, back through said catadioptric lens to said dispersing prism and said immersion grating, and dispersed dual waveband light is focused through said catadioptric lens and said second dioptric lens to said dual waveband detector.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jun 18, 2019
From: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 049501/0281 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 9, 2010
From: CHRISP, MICHAEL P.
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 024659/0141 →
Continuity (1)
Related Publication 20120002202A1 · Jan 5, 2012