MEMS Optical Logic NOR Gate using Integrated Tunable Lasers

B. Liu, H. Cai, X. Zhang, J. Tamil, Q. Zhang, A. Liu
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引用次数: 5

Abstract

This paper presents an optical logic NOR gate constructed by two MEMS tunable lasers and a Fabry-Pérot (FP) laser chip. The key idea is that the FP chip is directly controlled by two tunable optical signals via the physical mechanism of injection locking. Compared with other fiber-based gating mechanisms, this logic operation only depends on the optical power without need for accurate phase matching or polarization control. In experiment, the logic NOR function is demonstrated successfully at 100 Mb/s with an extinction ratio of more than 20 dB, and it has a potential to reach higher speed of 10 Gb/s level. The work demonstrates a MEMS single-chip solution for optical logic gates with the advantages of compact footprint, simple optical alignment and easy integration, and may find potential applications in high-speed all-optical communication networks.
集成可调谐激光器的MEMS光逻辑NOR门
本文提出了一种由两个MEMS可调谐激光器和一个FP激光芯片构成的光逻辑NOR门。其核心思想是通过注入锁定的物理机制,由两个可调谐光信号直接控制FP芯片。与其他基于光纤的门控机构相比,这种逻辑操作只依赖于光功率,不需要精确的相位匹配或偏振控制。实验成功验证了该逻辑NOR功能在100mb /s下的消光比大于20db,具有达到10gb /s级的更高速率的潜力。该工作展示了一种用于光逻辑门的MEMS单芯片解决方案,具有占地面积小,光学对准简单,易于集成的优点,可能在高速全光通信网络中找到潜在的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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