使用亚半周期中红外脉冲的高光谱成像

Yue Zhao, Shota Kusama, Yuji Furutani, Wei-Hong Huang, Chih-Wei Luo, Takao Fuji
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引用次数: 0

摘要

高光谱成像是一种结合成像和光谱学来表征和识别化学成分分布的制图技术。光谱图像是一个具有两个空间维度和一个光谱维度的“数据立方体”,即可以从高光谱图像的每个像素提取全光谱。中红外(MIR)高光谱技术通过分子振动来识别和绘制物体的化学成分,实现了“化学成像”或“化学作图”。然而,MIR探测器的像素数量有限和低信噪比阻碍了MIR高光谱成像的高性能。
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Hyper Spectral Imaging Using Sub-Half-Cycle Mid-Infrared Pulses
Hyperspectral imaging is a mapping technique that combines imaging and spectroscopy to characterize and identify the distribution of chemical constituents. A spectral image is a “data cube” with two spatial dimensions and one spectral dimension, namely, the full spectrum can be extracted from each pixel in the hyperspectral image. Mid-infrared (MIR) hyperspectral technique realizes “chemical imaging” or “chemical mapping” since it identifies and maps the chemical composition of the object through molecular vibration. However, the limited number of pixels and the low signal-to-noise ratio of MIR detectors prevent high performance of MIR hyperspectral imaging.
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