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Tunable true-time delay of a microwave photonic signal realized by cross gain modulation in a semiconductor waveguide

机译:通过半导体波导中的交叉增益调制实现的微波光子信号的可调谐的实时延迟

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摘要

We experimentally demonstrate the realization of a tunable true-time delay for microwave signals by exploiting cross gain modulation among counter-propagating optical beams in a semiconductor optical amplifier. Broadband operation from ∼5 to ∼35 GHz is observed. The physical effect originates from the combination of carrier dynamics and propagation effects, and the experimental results are well accounted for by a numerical model. We find that, in contrast to the case of the co-propagating beams, the bandwidth is not limited by the lifetime of excited carriers. The trade-off between the magnitude of the true-time delay and the microwave bandwidth is discussed. © 2011 American Institute of Physics.
机译:我们通过实验证明了通过利用半导体光放大器中反向传播的光束之间的交叉增益调制来实现微波信号的可调实时延迟。观察到约5至约35 GHz的宽带工作。物理效应源自载流子动力学和传播效应的结合,并且数值模型很好地说明了实验结果。我们发现,与共传播波束的情况相比,带宽不受受激载波寿命的限制。讨论了实时延迟的幅度与微波带宽之间的权衡。 ©2011美国物理研究所。

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  • 作者

    Xue Weiqi; Mørk Jesper;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 eng
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