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Multiple Light Coupling and Routing via a Microspherical Resonator Integrated in a T-Shaped Optical Fiber Configuration System

机译:通过集成在T形光纤配置系统中的微球谐振器进行多种光耦合和路由

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摘要

We demonstrate a three-port, light guiding and routing T-shaped configuration based on the combination of whispering gallery modes (WGMs) and micro-structured optical fibers (MOFs). This system includes a single mode optical fiber taper (SOFT), a slightly tapered MOF and a BaTiO3 microsphere for efficient light coupling and routing between these two optical fibers. The BaTiO3 glass microsphere is semi-immersed into one of the hollow capillaries of the MOF taper, while the single mode optical fiber taper is placed perpendicularly to the latter and in contact with the equatorial region of the microsphere. Experimental results are presented for different excitation and reading conditions through the WGM microspherical resonator, namely, through single mode optical fiber taper or the MOF. The experimental results indicate that light coupling between the MOF and the single mode optical fiber taper is facilitated at specific wavelengths, supported by the light localization characteristics of the BaTiO3 glass microsphere, with spectral Q-factors varying between 4.5 × 103 and 6.1 × 103, depending on the port and parity excitation.
机译:我们展示了基于耳语画廊模式(WGM)和微结构光纤(MOF)组合的三端口,光导和路由T形配置。该系统包括一个单模光纤锥度(SOFT),一个稍微锥形的MOF和一个BaTiO3微球,用于在这两个光纤之间进行有效的光耦合和路由。 BaTiO3玻璃微球被半浸入MOF锥度的空心毛细管之一中,而单模光纤锥垂直于后者而放置,并与微球的赤道区域接触。通过WGM微球谐振器,即通过单模光纤锥度或MOF,给出了针对不同激发和读取条件的实验结果。实验结果表明,在特定波长下,MOF和单模光纤锥度之间的光耦合得到促进,这受到BaTiO3玻璃微球体的光定位特性的支持,并且光谱Q因子在4.5×10 <3>之间变化。 / sup>和6.1×10 3 ,具体取决于端口和奇偶校验激励。

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