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Novel microwave photonic fractional Hilbert transformer using a ring resonator-based optical all-pass filter

机译:基于环形谐振器的光学全通滤波器的新型微波光子分数希尔伯特变换器

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摘要

We propose and demonstrate a novel wideband microwave photonic fractional Hilbert transformer implemented using a ring resonatorbased optical all-pass filter. The full programmability of the ring resonator allows variable and arbitrary fractional order of the Hilbert transformer. The performance analysis in both frequency and time domain validates that the proposed implementation provides a good approximation to an ideal fractional Hilbert transformer. This is also experimentally verified by an electrical S21 response characterization performed on a waveguide realization of a ring resonator. The waveguide-based structure allows the proposed Hilbert transformer to be integrated together with other building blocks on a photonic integrated circuit to create various system-level functionalities for on-chip microwave photonic signal processors. As an example, a circuit consisting of a splitter and a ring resonator has been realized which can perform on-chip phase control of microwave signals generated by means of optical heterodyning, and simultaneous generation of in-phase and quadrature microwave signals for a wide frequency range. For these functionalities, this simple and on-chip solution is considered to be practical, particularly when operating together with a dual-frequency laser. To our best knowledge, this is the first-time on-chip demonstration where ring resonators are employed to perform phase control functionalities for optical generation of microwave signals by means of optical heterodyning.
机译:我们提出并展示了一种使用环形谐振器的光学全通滤波器实现的新型宽带微波光子分数Hilbert变压器。环谐振器的完整可编程性允许Hilbert变压器的可变和任意分数顺序。频率和时域的性能分析验证了所提出的实施提供了对理想的分数HILBERT变压器的良好近似。这也通过对环形谐振器的波导实现执行的电气S21响应表征进行实验验证。基于波导的结构允许所提出的HILBERT变压器与光子集成电路上的其他构件块集成在一起,以为片上微波光子信号处理器创造各种系统级功能。作为示例,已经实现了由分离器和环形谐振器组成的电路,其可以执行通过光学异构产生的微波信号的片上相位控制,以及同时为宽频率同时生成相位和正交微波信号范围。对于这些功能,这种简单和片上解决方案被认为是实际的,特别是当与双频激光器一起操作时。为了我们的最佳知识,这是首次上芯片演示,其中采用环谐振器通过光学杂交来执行用于光学产生微波信号的相位控制功能。

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