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Photonic generation of broadly tunable microwave signals utilizing a dual-beam optically injected semiconductor laser

机译:利用双光束光学注入半导体激光器光子产生可广泛调谐的微波信号

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摘要

[[abstract]]We propose and study photonic generation of broadly tunable microwave signals utilizing a dual-beam optically injected semiconductor laser. By injecting a slave laser with two detuned master lasers at the stable locking states, microwave signals with frequencies corresponding to the frequency spacing of the master lasers can be generated. Without the need for a microwave reference source, the dual-beam optical injection scheme has the advantages of low cost and less system complexity. Moreover, without the limitations of period-doubling bifurcation and Hopf bifurcation, by utilizing the period-one oscillation state with a single-beam injection scheme, the microwave signals generated with the proposed scheme have a much broader tuning range. In this paper, optical and power spectra of the microwave signals generated with the dual-beam optical injection scheme are compared with those generated with the optical mixing, the single-beam injection, and the unlocked dual-beam injection schemes. Generation of tunable microwave signals up to 120 GHz is demonstrated, which is currently limited by the locking range of the slave laser determined by the frequency difference between the Hopf (higher frequency) and the saddle node (lower frequency) bifurcation curves.
机译:[[摘要]]我们提出并研究利用双光束光学注入半导体激光器对可广泛调谐的微波信号进行光子产生。通过在稳定的锁定状态下向从激光器注入两个失谐的主激光器,可以生成频率与主激光器的频率间隔相对应的微波信号。不需要微波参考源,双光束光学注入方案具有成本低和系统复杂度低的优点。此外,不受周期倍增分叉和霍普夫分叉的限制,通过利用单束注入方案的周期为一的振荡状态,利用该方案产生的微波信号具有更宽的调谐范围。在本文中,将通过双束光学注入方案生成的微波信号的光谱和功率谱与通过光学混合,单束注入和解锁双束注入方案产生的微波信号的光谱和功率谱进行比较。演示了高达120 GHz的可调谐微波信号的生成,目前该信号受从激光器的锁定范围限制,该锁定范围由Hopf(较高频率)和鞍形节点(较低频率)分叉曲线之间的频率差确定。

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    Y. S. Juan;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 [[iso]]en
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