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首页> 外文期刊>Optical Materials >Mid-infrared broadband ultraflat-top supercontinuum generation in dispersion engineered Ge-Sb-Se chalcogenide photonic crystal fiber
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Mid-infrared broadband ultraflat-top supercontinuum generation in dispersion engineered Ge-Sb-Se chalcogenide photonic crystal fiber

机译:色散工程Ge-Sb-Se硫族化物光子晶体光纤中红外宽带超平顶超连续谱的产生

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摘要

In this paper, we numerically demonstrate broadband, ultraflat-top and highly coherent mid-infrared Supercontinuum (SC) generation in an all-normal dispersion (ANDi) Ge15Sb15Se70 chalcogenide Circular Lattice Photonic Crystal Fiber (CL-PCF). The propagation properties of the fundamental mode are computed with the Finite Difference Method (FDM). Numerical results show that ANDi regime is obtained over the entire midinfrared wavelength range with a cladding pitch and air holes diameter of Lambda= 2 mu m and d= 0.8 mu m, respectively. Besides, the proposed CL-PCF exhibits small effective mode area and high Kerr nonlinearity up to 1.96 W-1 m(-1) at 3 mu m. Ultrashort pulse propagation inside the CL-PCF core is modelled by using the Generalized Non-Linear Schrodinger Equation (GNLSE). Simulation results show that by pumping at 3 mu m laser pulses with a total energy of 0.6 nJ and duration of 50 fs, into 10 mm long of the CL-PCF, generates an ultrabroadband and highly coherent SC spanning the wavelength region from 1.86 mu m to 5.35 mu m within less than 3 dB spectral dynamics. By increasing the initial pulse energy to attain 1 nJ, the generated SC bandwidth increases too and reaches 4.53 mu m in the spectral range extending from 1.67 mu m to 6.2 mu m at 4 dB spectral level. Moreover, the proposed CL-PCF based SC source is found promising for application in Optical Coherence Tomography (OCT) with an axial resolution of 0.87 mu m, achieved when pumping 1 nJ energy and 50 fs duration optical pulses.
机译:在本文中,我们以数值方式展示了在全正态色散(ANDi)Ge15Sb15Se70硫族化物圆晶格光子晶体光纤(CL-PCF)中产生的宽带,超平顶和高度相干的中红外超连续谱(SC)。基本模式的传播特性通过有限差分法(FDM)计算。数值结果表明,在包层间距和气孔直径分别为Lambda = 2μm和d = 0.8μm的整个中红外波长范围内获得ANDi谱。此外,提出的CL-PCF在3μm处具有小的有效模式面积和高Kerr非线性,最高1.96 W-1 m(-1)。使用广义非线性薛定inger方程(GNLSE)对CL-PCF内核内部的超短脉冲传播进行建模。仿真结果表明,通过将总能量为0.6 nJ,持续时间为50 fs的3μm激光脉冲泵浦到长度为10 mm的CL-PCF中,可以产生一个超宽带且高度相干的SC,其波长范围为1.86μm在不到3 dB的频谱动态范围内达到5.35μm。通过增加初始脉冲能量达到1 nJ,所产生的SC带宽也增加,在4 dB频谱水平下从1.67μm扩展到6.2μm的频谱范围内达到4.53μm。此外,发现提出的基于CL-PCF的SC源有望用于光相干断层扫描(OCT),其轴向分辨率为0.87μm,这是在泵浦1 nJ能量和50 fs持续时间的光脉冲时实现的。

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