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结合旋转狭缝与道威棱镜的空间扫描高光谱成像。

Spatial scanning hyperspectral imaging combining a rotating slit with a Dove prism.

作者信息

Abdo Mohammad, Badilita Vlad, Korvink Jan

出版信息

Opt Express. 2019 Jul 22;27(15):20290-20304. doi: 10.1364/OE.27.020290.

Abstract

We present a new concept for spatial scanning hyperspectral imaging. Spatial scanning is one of the main methods used for hyperspectral data acquisition and can provide high spectral resolution over a wide spectral range. However, conventional techniques, such as the whiskbroom and the pushbroom techniques, suffer from the need for relative motion between the target and the imaging system, which increases the complexity on the hardware side and limits the application possibilities. Our new approach combines a rotating slit and a co-rotating Dove prism. The rotating slit scans the target image by selecting one line from the image at each angular position of the slit. The rotating Dove prism is used to synchronously re-align the transmitted light from the selected image line with respect to the transmission grating to allow the projection of the diffracted light over the same range of pixel columns of the image sensor to facilitate data acquisition and extraction of spectral information. The new approach enables the spatial scanning of the target image without the need for relative linear motion or the use of additional external equipment and therefore opens the door for more application scenarios.

摘要

我们提出了一种用于空间扫描高光谱成像的新概念。空间扫描是用于高光谱数据采集的主要方法之一,并且可以在宽光谱范围内提供高光谱分辨率。然而,传统技术,如推扫式和摆扫式技术,存在目标与成像系统之间需要相对运动的问题,这增加了硬件方面的复杂性并限制了应用可能性。我们的新方法结合了一个旋转狭缝和一个同向旋转的道威棱镜。旋转狭缝通过在狭缝的每个角位置从图像中选择一条线来扫描目标图像。旋转道威棱镜用于将所选图像线的透射光相对于透射光栅同步重新对齐,以使衍射光投射到图像传感器的相同像素列范围内,便于数据采集和光谱信息提取。这种新方法能够在无需相对线性运动或使用额外外部设备的情况下对目标图像进行空间扫描,因此为更多应用场景打开了大门。

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