论文标题
基于集成的KERR频率梳子来源的可重构光子RF过滤器
Reconfigurable photonic RF filters based on integrated Kerr frequency comb sources
论文作者
论文摘要
我们基于集成的光学微型胶片展示了两类光子射频(RF)过滤器。第一个是基于横向滤波结构的,第二个是基于信道技术。微栓带来的大量波长导致RF光谱分辨率显着增加,并且对于RF滤波器而言,RF光谱分辨率明显增加。对于RF横向滤波器,我们证明了Q因子增强功能,改进了带外排斥,可调中心频率和可重新配置的过滤形状。高分辨率为117 MHz,大量RF瞬时带宽为4.64 GHz,以及可编程的RF传输功能,包括二进制编码的Notch过滤器和RF用可重新配置的斜率均衡过滤器,用于RF通道滤波器。基于微重的方法的成本和占地面积的可能性要小得多,并且对于集成的光子RF过滤器来说是有希望的。
We demonstrate two categories of photonic radio frequency (RF) filters based on integrated optical micro-combs. The first one is based on the transversal filtering structure and the second one is based on the channelization technique. The large number of wavelengths brought about by the microcomb results in a significantly increased RF spectral resolution and a large instantaneous bandwidth for the RF filters. For the RF transversal filter, we demonstrated Q factor enhancement, improved out-of-band rejection, tunable centre frequency, and reconfigurable filtering shapes. While a high resolution of 117 MHz, a large RF instantaneous bandwidth of 4.64 GHz, and programmable RF transfer functions including binary-coded notch filters and RF equalizing filters with reconfigurable slopes are demonstrated for the RF channelized filter. The microcomb-based approaches feature a potentially much smaller cost and footprint, and is promising for integrated photonic RF filters.