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Photonics-based microwave frequency measurement using a double-sideband suppressed-carrier modulation and an InP integrated ring-assisted Mach-Zehnder interferometer filter

机译:使用双边带抑制载波调制和InP集成环辅助Mach-Zehnder干涉仪滤波器的基于光子学的微波频率测量

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摘要

A photonic system capable of estimating the unknown frequency of a CW microwave tone is presented. The core of the system is a complementary optical filter monolithically integrated in InP, consisting of a ring-assisted Mach-Zehnder interferometer with a second-order elliptic response. By simultaneously measuring the different optical powers produced by a double-sideband suppressed-carrier modulation at the outputs of the photonic integrated circuit, an amplitude comparison function that depends on the input tone frequency is obtained. Using this technique, a frequency measurement range of 10 GHz (5-15 GHz) with a root mean square value of frequency error lower than 200 MHz is experimentally demonstrated. Moreover, simulations showing the impact of a residual optical carrier on system performance are also provided.
机译:提出了一种能够估计CW微波音调未知频率的光子系统。该系统的核心是单片集成在InP中的互补光学滤波器,它由具有二阶椭圆响应的环形辅助Mach-Zehnder干涉仪组成。通过在光子集成电路的输出端同时测量由双边带抑制载波调制产生的不同光功率,可以获得取决于输入音调频率的幅度比较函数。使用该技术,实验证明了10 GHz(5-15 GHz)的频率测量范围,其频率误差的均方根值低于200 MHz。此外,还提供了显示残留光学载体对系统性能的影响的仿真。

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