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Photonic crystal fiber for dispersion compensation

机译:光子晶体光纤用于色散补偿

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摘要

The dispersion and mode characteristics in a dual-concentric-core photonic crystal fiber, based on pure silica, are simulated by the multipole method. The fiber exhibits very large negative dispersion due to anticrossing of two individual inner core and outer core modes. Near the wavelength of 1.55 (mu)m, we could obtain narrowband dispersion-compensating fiber with dispersion values of -23,000 ps/kmm, broadband dispersion-compensating fiber with dispersion values from -1000 ps/kmm to -2500 ps/kmm over a 200 nm range, and kappa values near 300 nm, which matched well with standard single mode fiber. It shows that even if there are some changes in the structure parameters during fabrication, these fibers can still maintain a fine dispersion-compensating property.
机译:通过多极点方法模拟了基于纯二氧化硅的双同心芯光子晶体光纤中的色散和模式特性。由于两个单独的内芯和外芯模的反交叉,该纤维表现出非常大的负色散。在1.55μm的波长附近,我们可以获得色散值为-23,000 ps / km / nm的窄带色散补偿光纤,色散值为-1000 ps / km / nm到-2500 ps的宽带色散补偿光纤/ km / nm在200 nm范围内,kappa值接近300 nm,与标准单模光纤非常匹配。结果表明,即使在制造过程中结构参数发生某些变化,这些纤维仍可以保持良好的色散补偿性能。

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