首页> 外文会议>Conference on Integrated Optics and Photonic Integrated Circuits; 20040427-20040429; Strasbourg; FR >Multi-wavelength Optical Add-Drop Multiplexer with Nanosecond Reconfiguration Times for Local Area Networking
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Multi-wavelength Optical Add-Drop Multiplexer with Nanosecond Reconfiguration Times for Local Area Networking

机译:用于局域网的具有纳秒级重构时间的多波长光分插复用器

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It is desirable for data networks to have low transmission latency. This may be achieved by exploiting the short packet lengths and the high bandwidths that can be achieved using multi-wavelength operation. Semiconductor optical amplifiers (SOAs) have been demonstrated as building blocks for optical switches and have also been shown to be well suited to the fast switching required for optical packet switching. We have realised an InP based add-drop multiplexer (ADM) integrated on a single 850 μm x 850 μm chip. The bit error penalty performance has previously been shown to be below 1.2 dB for each of the operating paths through the device: add, drop and through modes at 2.5 Gbit/s data rates. Further, low penalty operation has previously been demonstrated experimentally with 4 simultaneous wavelengths. It is known that the dynamic range of an SOA can limit the number of wavelengths supported and that the pattern sensitivity in SOAs increases their operating penalty. We investigate the multi-wavelength operation of our ADM device and show that a power penalty of less than 0.8 dB is maintained over a 20 dB input power dynamic range. We also show a -3 dB optical bandwidth of 30 nm suitable for multi-wavelength operation of cascaded ADMs. Finally we present experimental results to show that the pattern dependent operating penalty of the ADM is reduced as the number of wavelengths of asynchronous data is increased. This result may be exploited in our proposed optical data network to produce an unproved optical penalty.
机译:期望数据网络具有低传输等待时间。这可以通过利用可以使用多波长操作实现的短数据包长度和高带宽来实现。半导体光放大器(SOA)已被证明是用于光交换的构建块,并且已经显示出非常适合光分组交换所需的快速交换。我们已经实现了集成在单个850μmx 850μm芯片上的基于InP的分插复用器(ADM)。先前已证明,通过该设备的每条工作路径的误码性能均低于1.2 dB:以2.5 Gbit / s的数据速率进行加,减和直通模式。此外,先前已经在4个同时波长的实验中证明了低罚分操作。众所周知,SOA的动态范围会限制所支持的波长数量,并且SOA中的图案灵敏度会增加其工作损失。我们研究了ADM设备的多波长工作情况,结果表明,在20 dB的输入功率动态范围内,功率损失保持在0.8 dB以下。我们还显示了适用于级联ADM的多波长操作的30 nm -3 dB光学带宽。最后,我们提供实验结果,以显示随着异步数据波长数量的增加,ADM的模式相关操作损失减少。在我们提出的光学数据网络中可以利用此结果来产生未经证明的光学损失。

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