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Designing a silicon waveguide for tunable wavelength conversion in terahertz region

机译:设计硅波导,在太赫兹地区进行可调谐波长转换

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Terahertz (THz) radiation, as a low-risk and high-efficient radiation has attracted especial attention and development of compact and efficient THz sources for various applications is of considerable interest. Wavelength conversion in the standard optical fibers was first observed and investigated based on the nonlinear phenomenon known as the scalar modulation instability (SMI). Compared with standard silica-based optical fibers, silicon waveguides have advantages such as higher refractive index and lower absorption loss over the THz region. The SMI can be analyzed based on the FWM process and in order to satisfy the phase-matching condition, the dispersion characteristics of the silicon waveguide must be well engineered. To this end, the pump wavelength must be adjusted very close to the zerodispersion wavelength (ZDW) of the waveguide. There are many methods which can be used to engineer the dispersion curve; one of them is changing geometrical parameters of the waveguide. In this paper, a silicon waveguide based on the photonic crystal idea is designed for the first time, and using the SMI phenomenon, tunable wavelength conversion for generation of THz radiation is simulated. By changing the geometrical parameters such as the air hole diameter of the photonic crystal, dispersion and nonlinear characteristics of the waveguide are controlled and hence the generated THz radiation is tuned. The results show when the pump wavelength is set at λp=5.60 μm in the normal dispersion regime and for the fixed lattice pitch of Λ= 4.80μm, as the air hole diameter is changing from d=4.60μm to d=0.86μm, the converted wavelength is tuned from λ=2.15μm to λ=326.17μm, respectively.
机译:太赫兹辐射,作为一种低风险,高效率的辐射已引起特殊关注和紧凑而高效的太赫兹源开发的各种应用是相当大的兴趣。在标准光纤波长转换第一次观察和研究了基于被称为标量调制不稳定性(SMI)的非线性现象。与标准的基于二氧化硅的光纤相比,硅波导具有如在所述太赫兹区域更高的折射率和较低的吸收损耗的优点。该SMI可以基于FWM过程,并且为了满足相位匹配条件,在硅波导的色散特性,必须精心设计进行分析。为此,泵浦波长必须非常接近波导的zerodispersion波长(ZDW)进行调整。有可用于改造色散曲线许多方法;其中之一是改变波导的几何参数。在本文中,基于光子晶体的想法的硅波导被设计用于在第一时间,以及使用该SMI现象,用于产生THz辐射的可调谐波长转换的模拟。通过改变几何参数,如光子晶体,分散和波导的非线性特性的空气孔直径被控制,因此所产生的THz辐射被调谐。结果表明当泵波长在正常色散区和Λ=4.80μm的固定晶格间距被设定为λp= 5.60微米,由于空气孔直径从d变化=4.60μm至d =0.86μm,则转换后的波长从λ=2.15μm分别调谐到λ=326.17μm,。

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