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Design of arrayed-waveguide gratings using hybrid Fourier-Fresnel transform techniques

机译:基于混合傅里叶-菲涅耳变换技术的阵列波导光栅设计

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摘要

We describe how transform techniques may be applied to the design of arrayed-waveguide gratings (AWG's). A hybrid Fourier-Fresnel transform model indicates that a flat AWG router passband over 30% of the device free-spectral range (FSR) is feasible. Minimized passband ripple is achieved by applying a subparabolic phase-profile (phase-exponent P=1.82) to the Fourier plane of the AWG. Simulations of a complex-apodized AWG with passband 3 dB width increased from 1 to 12 nm, with a near-trapezoidal amplitude response, and band-edge group delay of 70 ps reduced to 10 ps are presented for a device with a FSR of 40 nm.
机译:我们描述了如何将变换技术应用于阵列波导光栅(AWG)的设计。混合傅里叶-菲涅尔变换模型表明,在设备自由光谱范围(FSR)的30%以上的平坦AWG路由器通带是可行的。通过在AWG的Fourier平面上应用一个抛物线形的相位曲线(相位指数P = 1.82),可以使通带纹波最小。对于FSR为40的器件,提出了通径3 dB的通带宽度从1增大到12 nm,具有接近梯形的幅度响应,以及将带宽范围从70 ps降低到10 ps的复杂边缘AWG的仿真纳米

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