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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >All-Optical Processing for Pulse Position Coded Header in Packet Switched Optical Networks Using Vertical Cavity Semiconductor Gates
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All-Optical Processing for Pulse Position Coded Header in Packet Switched Optical Networks Using Vertical Cavity Semiconductor Gates

机译:使用垂直腔半导体门的分组交换光网络中脉冲位置编码标头的全光处理

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摘要

In this paper, we demonstrate all-optical header extraction and seed-pulse extraction for routing and synchronization of optical packets with pulse-position-coded headers. Our approach exploits self-induced effects in a passive, low-power, polarization-independent, compact vertical cavity semiconductor gate (VCSG). The VCSG operation is based on saturable absorption in semiconductor multiple quantum wells placed within an asymmetric Fabry-Perot cavity. Experiments were performed for both amplitude-modulated and differential-phase-shift-keying-modulated payload data. The payload repetition rate was 12.5 Gbit/s. The packet-bit rate was not limited by the gate recovery time. The operation of the VCSG was also investigated numerically.
机译:在本文中,我们演示了用于通过脉冲位置编码的报头路由和同步光分组的全光头提取和种子脉冲提取。我们的方法在无源,低功耗,偏振无关的紧凑型垂直腔半导体栅极(VCSG)中利用自感应效应。 VCSG操作基于放置在不对称Fabry-Perot腔内的半导体多个量子阱中的饱和吸收。对幅度调制和差分相移键控调制的有效载荷数据都进行了实验。有效负载重复率为12.5 Gbit / s。数据包比特率不受门恢复时间的限制。还对VCSG的运行进行了数值研究。

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