Miniature snapshot imaging spectrometer and imaging method thereof
An imaging spectrometer and snapshot technology, which is applied in the directions of interference spectroscopy, spectrometry/spectrophotometry/monochromator, instruments, etc. The effect of being easy to carry and reducing the overall volume of the structure
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Embodiment 1
[0025] Embodiment 1: as figure 1 As shown, a small snapshot imaging spectrometer of this embodiment includes a polarizer 1 arranged in sequence along the light propagation direction, a microlens array 2, a birefringent crystal column array whose optical axes are perpendicular to each other, an analyzer 6, and a photodetector device and signal processing unit 7, the non-transparent surface of the birefringent crystal column array whose optical axes are perpendicular to each other is coated with light-absorbing material; the birefringent crystal column array whose optical axes are perpendicular to each other includes the first sub-crystal column 3 and the second Two sub-crystal pillars 5, the first sub-crystal pillar 3 and the second sub-crystal pillar 5 are evenly distributed into arrays according to the order of length difference and glued together, the difference between the length difference between the first sub-crystal pillar 3 and the second sub-crystal pillar 5 The diffe...
Embodiment 2
[0030] Embodiment 2: as figure 2 As shown, a small-scale snapshot imaging spectrometer in this embodiment includes a polarizer 1 sequentially arranged along the light propagation direction, a birefringent crystal column array whose optical axes are perpendicular to each other, a microlens array 2, and a fused silica glass column array 8, A polarizer 6, a photodetector and a signal processing unit 7; the birefringent crystal column array whose optical axes are perpendicular to each other includes a first sub-crystal column 3 and a second sub-crystal column 5, the first sub-crystal column 3 and the second sub-crystal column The sub-crystal pillars 5 are evenly distributed into an array in the order of length difference and glued together. The difference in optical path difference that can be generated by the difference in length between the first sub-crystal pillar 3 and the second sub-crystal pillar 5 satisfies Nyquist sampling According to the law, the difference of the resul...
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