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Polarization Division Multiplexing for Optical Data Communications

机译:光学数据通信的偏振分频多路复用

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Multiple parallel channels are ubiquitous in optical communications, with spatial division multiplexing (separate physical paths) and wavelength division multiplexing (separate optical wavelengths) being the most common forms. Here, we investigate the viability of polarization division multiplexing, the separation of distinct parallel optical communication channels through the polarization properties of light. Two or more linearly polarized optical signals (at different polarization angles) are transmitted through a common medium, filtered using aluminum nanowire optical filters fabricated on-chip, and received using individual silicon photodetectors (one per channel). The entire receiver (including optics) is compatible with standard CMOS fabrication processes. The filter model is based upon an input optical, signal formed as the sum of the Stokes vectors for each individual channel, transformed by the Mueller matrix that models the filter proper, resulting in an output optical signal that impinges on each photodiode. The results show that two- and three-channel systems can operate with a fixed-threshold comparator in the receiver circuit, but four-channel systems (and larger) will require channel coding of some form. For example, in the four-channel system, 10 of 16 distinct bit patterns are separable by the receiver. The model supports investigation of the range of variability tolerable in the fabrication of the on-chip polarization filters.
机译:多个并行通道在光通信中普遍存在,具有空间分割复用(单独的物理路径)和波分复用(单独的光学波长)是最常见的形式。这里,我们研究了偏振分割复用的可行性,通过光的偏振特性来分离不同的并联光通信通道。两个或更多个线性偏振光信号(以不同的偏振角)通过普通介质传输,使用片上制造的铝纳米线光学滤波器过滤,并使用单独的硅光电探测器(每个通道一个)接收。整个接收器(包括光学器件)与标准CMOS制造过程兼容。滤波器模型基于输入光学,其形成为每个单独的通道的STOKE向量的总和,由模拟滤波器适当的ueller矩阵变换,从而导致在每个光电二极管上施加的输出光信号。结果表明,两个和三通道系统可以用接收器电路中的固定阈值比较器进行操作,但是四通道系统(和更大)将需要某种形式的信道编码。例如,在四通道系统中,16个不同的位模式中的10个由接收器可分离。该模型支持在片上偏振滤波器的制造中可容许的可变性范围的研究。

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