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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >The benefits of ultrashort optical pulses in optically interconnected systems
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The benefits of ultrashort optical pulses in optically interconnected systems

机译:光互连系统中超短光脉冲的优势

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摘要

Many properties of an optically interconnected system can be improved through the use of a modelocked laser. The short pulse duration, high peak power, wide spectral bandwidth, and low timing jitter of such a laser lead to these benefits. Timing advantages include simplified synchronization across large chip areas, receiver latency reduction, and data resynchronization. Lower power dissipation may be achieved through improved receiver sensitivity. Additional applications of short optical pulses include time-division multiplexing, single-source wavelength-division multiplexing, and precise time-domain testing of circuits. Several of these concepts were investigated using a high-speed chip-to-chip optical interconnect demonstration link. The link employs a modelocked laser and surface-normal optoelectronic modulators that were flip-chip bonded to silicon CMOS circuits. This paper outlines experiments that were performed on or simulated for the link, and discusses the important benefits of ultrashort optical pulses for optical interconnection.
机译:光学互连系统的许多特性可以通过使用锁模激光器来改善。这种激光器的短脉冲持续时间,高峰值功率,宽频谱带宽和低时序抖动带来了这些好处。时序优势包括跨大芯片区域的简化同步,减少接收器延迟和数据重新同步。可以通过提高接收器灵敏度来降低功耗。短光脉冲的其他应用包括时分多路复用,单源波分多路复用以及电路的精确时域测试。使用高速芯片间光学互连演示链路研究了其中的一些概念。该链接采用了锁模激光器和表面法线光电调制器,这些调制器倒装芯片连接到硅CMOS电路。本文概述了在链路上执行的或为链路仿真的实验,并讨论了超短光脉冲对光互连的重要好处。

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