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首页> 外文期刊>Journal of Lightwave Technology >Multilayer thin-film stacks with steplike spatial beam shifting
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Multilayer thin-film stacks with steplike spatial beam shifting

机译:具有阶梯状空间光束移位的多层薄膜堆叠

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This paper demonstrates the use of a single multilayer thin-film stack for generating custom-engineered spatial dispersion, i.e., spatial shift as a function of wavelength. Based on group-velocity effects similar to the superprism effect observed in photonic crystals, this thin-film grating (TFG) device allows for multiplexing or demultiplexing multiple wavelength-division-multiplexed (WDM) channels using a single nonperiodic thin-film stack. We designed a four-channel TFG for coarse WDM applications with 20-nm channel spacing and flat-top passbands. This paper shows that flat-top passbands correspond to a steplike spatial beam shifting with wavelength. The influence of a finite beamwidth on the passband shape is discussed using Fourier decomposition of the beam into plane-wave components. The paper concludes with experimental results for a three-channel TFG demonstrating steplike beam shifting.
机译:本文演示了使用单个多层薄膜堆栈来生成定制工程化的空间色散,即空间位移与波长的关系。基于类似于在光子晶体中观察到的超棱镜效应的群速度效应,该薄膜光栅(TFG)器件允许使用单个非周期性薄膜堆栈对多个波分复用(WDM)通道进行复用或解复用。我们为粗WDM应用设计了一个四通道TFG,具有20 nm的通道间隔和平顶通带。本文表明,平顶通带对应于随波长变化的阶梯状空间光束。使用光束的傅立叶分解为平面波分量,讨论了有限光束宽度对通带形状的影响。本文以三通道TFG的实验结果作为结论,该TFG演示了阶梯状光束移位。

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