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Photon Transfer Methods and Results For Electron Multiplication CCDs

机译:电子倍增CCD的光子转移方法和结果

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Optical systems designed for some defense, environmental, and commercial remote-sensing applications must simultaneously have a high dynamic range, high sensitivity, and low noise-equivalent contrast. We have adapted James Janesick's photon transfer technique for characterizing the noise performance of an electron multiplication CCD (EMCCD), and we have developed methods for characterizing performance parameters in a lab environment. We have defined a new figure of merit to complement the traditionally used dynamic range that quantifies the usefulness of EMCCD imagers. We use the results for EMCCDs to predict their performance with hyperspectral and multispectral imaging systems.
机译:为某些国防,环境和商业遥感应用而设计的光学系统必须同时具有高动态范围,高灵敏度和低等效噪声的对比度。我们已经采用了James Janesick的光子传输技术来表征电子倍增CCD(EMCCD)的噪声性能,并且我们已经开发了用于表征实验室环境中性能参数的方法。我们定义了一个新的品质因数,以补充传统上使用的动态范围,该范围量化了EMCCD成像器的实用性。我们使用EMCCD的结果来预测其在高光谱和多光谱成像系统中的性能。

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