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Study on Quantum Imaging Experimental Methods based on the Light String Theory

机译:基于光弦理论的量子成像实验方法研究

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We studied the energy distribution mechanism of quantum, essence of quantum and generation process of quantum, based on light string theory. Next, we carried out monochromatic quantum imaging experiments, and proposed using squeezed light fields to improve imaging resolution. We primarily study generation and control methods of squeezed lights, sideband frequency-locking technique of quantum imaging, and design methods of mode cleaners for squeezed light, and optical design for squeezed light. Finally, we compared the resolution of quantum imaging and laser imaging. The physical imaging control experiment of the XIOPM character board verified that squeezed light could improve imaging resolution. The USAF 1951 resolution test showed that the resolution of quantum imaging was improved significantly with the increase of the degree of compressibility of squeezed light. The results of the Wedge resolution test card control experiments showed that the resolution of quantum imaging is much higher than that of the laser imaging.
机译:基于光串理论,研究了量子的能量分布机理,量子的本质和量子的生成过程。接下来,我们进行了单色量子成像实验,并提出使用压缩光场来提高成像分辨率。我们主要研究挤压光的生成和控制方法,量子成像的边带锁频技术,挤压光的模式清洁器设计方法以及挤压光的光学设计。最后,我们比较了量子成像和激光成像的分辨率。 XIOPM字符板的物理成像控制实验证明,挤压光可以提高成像分辨率。美国空军1951年的分辨率测试表明,随着压缩光的压缩程度的增加,量子成像的分辨率显着提高。 Wedge分辨率测试卡控制实验的结果表明,量子成像的分辨率远高于激光成像的分辨率。

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