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Design of Photonic Crystal Fibers for High Data Rate Transfer at Ultra Low Confinement Loss

机译:超低限制损耗下高数据速率传输的光子晶体光纤设计

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PCF structure with `Y'-shaped core, `T'-shaped core and a `D'-shaped PCF structure have been investigated. A full vector of Finite Difference Time Domain (FDTD) method has been used for analysis of results. Dispersion reported by `D'-shaped structure is found to be highly negative and structure with `Y'-shaped core reports anomalous behavior. Moreover, structure with `T'-shaped core reports zeros dispersion over communication wavelength. This structure also reports high birefringence and thus can be widely useful for optical communication and optical sensor. Moreover this reports single mode propagation at ultra low loss.
机译:研究了具有“ Y”形芯,“ T”形芯和“ D”形PCF结构的PCF结构。有限差分时域(FDTD)方法的完整矢量已用于结果分析。发现由“ D”形结构报告的色散高度为负,而具有“ Y”形核心的结构报告异常行为。而且,具有“ T”形芯的结构报告了在通信波长上的零色散。该结构还报告了高双折射,因此可广泛用于光通信和光传感器。此外,这报告了超低损耗下的单模传播。

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