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首页> 外文期刊>Journal of Lightwave Technology >Tunable spectral slicing filters for dense wavelength-division multiplexing
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Tunable spectral slicing filters for dense wavelength-division multiplexing

机译:可调谐光谱切片滤波器,用于密集的波分复用

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摘要

A new type of polarization independent guided-wave optical filter with etalon-like spectral response for wavelength-division multiplexing (WDM) is described and analyzed. A four-port integrated optic device performs the spectral slicing (wavelength interleaving/deinterleaving) function of selecting equally spaced frequency channels from a group of incident WDM channels. Spectral selection is based upon codirectional transverse electric (TE)/spl harr/transverse magnetic (TM) conversion induced by N equally spaced coupling regions in a single mode optical waveguide. A matrix formulation is used to determine the TE/spl harr/TM coupling strengths which yield N-1 equally spaced nulls between adjacent selected frequencies, for N as high as 16. Spectral response is calculated for polarization coupling regions of infinitesimal length as well as for polarization coupling induced by gratings of finite extent. Lithium niobate, due to its high birefringence, is an ideal substrate material for dense WDM filters. Polarization coupling can be induced by a sparse grating of an overlay material such as fused silica. The spectral response can be tuned at submicrosecond speeds by an applied electric field which alters the waveguide birefringence, and hence the optical frequency at which near-complete polarization conversion occurs. A reflective design to make more effective use of the available substrate dimension is described. Single channel selection over a wide spectral range can be achieved by cascading two of the filters in series.
机译:描述并分析了一种新型的具有标准具类谱响应的偏振独立导波光学滤波器,用于波分复用(WDM)。四端口集成光学设备执行频谱切片(波长交织/解交织)功能,以从一组入射WDM信道中选择等间隔的频率信道。光谱选择基于单模光波导中N个等距耦合区域引起的同向横向电(TE)/ spl harr /横向磁(TM)转换。矩阵公式用于确定TE / spl harr / TM耦合强度,该强度在N高达16时在相邻选定频率之间产生N-1个等距的零点。计算出无限长的偏振耦合区域的光谱响应,以及用于有限范围的光栅引起的偏振耦合。铌酸锂由于其高双折射而成为致密WDM滤光片的理想基材。可以通过覆盖材料(例如熔融石英)的稀疏光栅来引起偏振耦合。可以通过施加电场以亚微秒的速度来调谐光谱响应,该电场会改变波导的双折射,从而改变发生近乎完全偏振转换的光频率。描述了一种反射设计,以更有效地利用可用的基板尺寸。通过串联两个滤波器,可以在很宽的光谱范围内进行单通道选择。

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