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首页> 外文期刊>CERAMICS INTERNATIONAL >Mid-infrared dual-rhombic air hole Ge20Sb15Se65 chalcogenide photonic crystal fiber with high birefringence and high nonlinearity
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Mid-infrared dual-rhombic air hole Ge20Sb15Se65 chalcogenide photonic crystal fiber with high birefringence and high nonlinearity

机译:中红外双菱形空气孔Ge20sb15se65硫属化物光子晶体纤维,具有高双折射和高非线性

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摘要

We propose a mid-infrared dual-rhombic air hole hexagonal lattice photonic crystal fiber with high birefringence and large nonlinearity based on Ge20Sb15Se65 chalcogenide glass. The properties of birefringence, dispersion, nonlinearity, and confinement loss were investigated in the 3 mu m similar to 5 mu m mid-infrared range by using the Finite Difference Time Domain (FDTD) method with perfectly matched layer (PML) absorption boundary conditions. The results indicate that for the optimized structural parameters of Lambda = 2.0 mu m, D = 1.932 mu m, d = 0.8 mu m, and H = 0.8 mu m, an ultrahigh birefringence of 0.041, a very low confinement loss of 0.0013 dB/km (for x-polarization modes) and 0.0342 dB/km (for y-polarization modes), and the maximum nonlinearity coefficient of 4375 w(-1)km(-1) (for x-polarization modes) and 3960 w(-1)km(-1) (for y-polarization modes) were achieved, respectively. The proposed PCF has a lower confinement loss and higher birefringence than an elliptical-hole PCF with the same air-filling fraction. Thus, it will be an excellent candidate for mid-infrared optical fiber sensing, precision optical instruments and nonlinear optics.
机译:我们提出了一种基于Ge20SB15Se65硫属化物玻璃的高双折射和大型非线性的中红外双菱形空气孔六边形晶片光子晶纤维。通过使用具有完美匹配的层(PML)吸收边界条件的有限差分时域(FDTD)方法,在类似于5μm中红外线范围的3μm中研究了双折射,分散,非线性和限制损失的性质。结果表明,对于Lambda =2.0μm,d =1.932μm,d =0.8μm,和h =0.8μm,超高双折射为0.041,非常低的限制损失为0.0013 db / KM(对于X偏振模式)和0.0342 dB / km(用于Y偏振模式),以及4375W(-1)km(-1)(用于X偏振模式)和3960W( - )的最大非线性系数和3960W( - 1)分别实现了KM(-1)(对于Y偏振模式)。所提出的PCF具有比具有相同空气填充部分的椭圆形PCF更低的限制性损失和更高的双折射。因此,它将是中红外光纤感测,精密光学仪器和非线性光学器件的优异候选者。

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