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首页> 外文期刊>Optics and Photonics Journal >Application of Vacuum Photoelectric Detection Technology in Super-Resolution System
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Application of Vacuum Photoelectric Detection Technology in Super-Resolution System

机译:真空光电检测技术在超分辨率系统中的应用

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摘要

Due to the wave characteristics of light, diffraction occurs when the light passes through the optical system, so that the resolution of the ordinary far-field optical system is limited by the size of the Airy disk diameter. There are various factors that cause image quality degradation during system detection and imaging, such as optical system aberrations, atmospheric inter-ference, defocusing, system noise and so on. Super-resolution optical imaging technology is the most innovative breakthrough in the optical imaging and detection field in this century. It goes beyond the resolution limit of ordinary optical systems or detectors, and can get more details and information of the structure, providing unprecedented tools for various fields. Compared with ordinary optical systems, super-resolution systems have very high requirements on the signals to be detected, which cannot be met by ordinary detection techniques. Vacuum photoelectric detection and imaging technology is equipped with the characteristics of high sensitivity and fast response. It is widely used in super-resolution systems and has played a great role in super-resolution systems. In this paper, the principles and structure of the image-converter streak camera super-resolution system, scanning electron microscopy super-resolution system and laser scanning confocal super-resolution system will be sorted out separately, and the essential role of the vacuum photoelectric detection technology in the ultra-microscopic sys-tem will be analyzed.
机译:由于光的波特性,当光通过光学系统时发生衍射,从而普通远场光学系统的分辨率受到通风盘直径的尺寸的限制。有各种因素导致系统检测和成像期间的图像质量劣化,例如光学系统像差,大气间互相,散焦,系统噪声等。超分辨率光学成像技术是本世纪光学成像和检测领域最具创新性的突破。它超出了普通光学系统或探测器的分辨率限制,并且可以获得更多细节和信息的信息,为各种领域提供前所未有的工具。与普通光学系统相比,超分辨率系统对要检测的信号具有非常高的要求,这不能通过普通检测技术满足。真空光电检测和成像技术配备了高灵敏度和快速反应的特点。它广泛用于超分辨率系统,在超分辨率系统中发挥了巨大作用。本文在图像 - 转换器条纹相机超分辨率系统,扫描电子显微镜超分辨率系统和激光扫描共分辨率超分辨率系统的原理和结构将单独分类,以及真空光电检测的基本作用将分析超微微观SYS-TEM中的技术。

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