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A neoteric packeged structure to eliminate the spoiling effect from external environment

机译:一种新的褶皱结构,消除了外部环境的污水效果

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We proposed a novel dielectric silica packaged microsphere-taper coupling structure to protect the coupling system from damage and avoid the spoiling effects on the Q. Here, several factors such as water vapor and dust affecting the Q of optical microsphere cavities were analyzed theoretically and experimentally. Experiments demonstrated that the water vapor and dust around the microsphere cavity have great effects on the Q, which were mainly the optical absorption loss of water and scattering loss of dust. However, the packaged body isolated the microsphere-taper from the outside surroundings, and maintained the Q above 106 for a long time. Therefore, it will greatly promote optical research from fundamental study to application research.
机译:我们提出了一种新型介电二氧化硅包装微球锥形耦合结构,以保护联轴器系统免受损坏,避免对Q的破坏效果。在这里,理论上和实验地分析了影响光学微球腔Q的水蒸气和粉尘的几个因素。实验表明,微球腔周围的水蒸气和灰尘对Q具有很大的影响,这主要是水的光学吸收损失和散射粉尘丢失。然而,封装体与外周围环境隔离微球锥度,并长时间保持了10 6 以上的q。因此,它将极大地促进从基本研究到应用研究的光学研究。

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