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Silicon Nanowire Embedded Spiral Photonic Crystal Fiber for Soliton-Effect Pulse Compression

机译:用于孤子效应脉冲压缩的硅纳米线嵌入式螺旋光子晶体纤维

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In this paper, we propose a new type of optical waveguide called silicon nanowire embedded equai-angular spiral photonic crystal fiber (SN-SPCF) using fully vectorial finite element method, where closely arranged arrays of air holes act as cladding and nanosize silicon material at the centre acts as core. We show that the proposed nanowire embedded PCF of 400 nm core diameter exhibits high anomalous group velocity dispersion (-3148 ps~2/km), small third order dispersion (-8.6591 ps~3/km) and high nonlinearity (443.2 W~(-1)m~(-1)) at 1550 nm wavelength. Solitoneffect pulse compression of femtosecond pulses in a silicon nanowire-spiral photonic crystal fiber at 1550 nm is numerically studied. We demonstrate a pulse compression of 75 fs input pulse to about 4 fs by the simultaneous actions of both linear effects (a large anomalous group velocity dispersion and a small third order dispersion) and the nonlinear effect (an effective high nonlinearity).
机译:在本文中,我们提出了一种新型的光波导,其使用全矢量图有限元方法提出了一种称为硅纳米线嵌入式相位角螺旋光子晶体纤维(SN-SPCF)的新型光波导,其中紧密地布置为气孔阵列充当覆层和纳米型硅材料该中心充当核心。我们表明,所提出的纳米线嵌入式PCF为400nm芯直径,具有高异常群速度分散(-3148 ps〜2 / km),小三阶分散(-8.6591 ps〜3 / km)和高的非线性(443.2 w〜( -1)M〜(-1))在1550nm波长下。在1550nm处,在1550nm处,在硅纳米线螺旋光子晶体纤维中的飞秒脉冲的孤子缺陷脉冲压缩在数值上进行了数值研究。我们通过线性效应(大异常群速度分散和小三阶色散的同时效应和非线性效应(有效高非线性)的同时动作证明了75fs输入脉冲的脉冲压缩至约4fs。

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