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Simultaneous Microwave- and Millimeter-Wave Signal Generation with a 1310-nm Quantum-Dot-Distributed Feedback Laser

机译:使用1310 nm量子点分布反馈激光器同时产生微波和毫米波信号

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摘要

© 1995-2012 IEEE. Simultaneous generation of microwave- and millimeter-wave (mm-wave) signals is demonstrated experimentally using a 1310-nm quantum-dot-(QD)-distributed-feedback (DFB) laser. The reported technique is based on the period-1 dynamics and dual-mode lasing induced in the laser device under external optical injection. Tunability of the generated microwave- and mm-wave signals is obtained. Furthermore, abrupt switching between different frequency regimes in the microwave- and mm-wave bands is also observed. These novel frequency switching mechanisms added to the tuning capability of the system offer exciting prospects for novel uses of QD lasers in ultrahigh-frequency applications. Our approach also benefits from a simple experimental configuration using basic optical fiber components making our technique totally compatible with optical telecommunication networks.
机译:©1995-2012 IEEE。使用1310 nm量子点(QD)分布反馈(DFB)激光器通过实验证明了微波和毫米波(mm-wave)信号的同时生成。报道的技术基于在外部光注入下的激光设备中诱发的周期1动力学和双模激射。获得了所产生的微波和毫米波信号的可调谐性。此外,还观察到微波和毫米波波段不同频率范围之间的突然切换。这些新颖的频率切换机制增加了系统的调谐能力,为超高频应用中QD激光器的新颖用途提供了令人兴奋的前景。我们的方法还受益于使用基本光纤组件进行的简单实验配置,从而使我们的技术与光通信网络完全兼容。

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