Nazemosadat Elham, Gasulla Ivana
Opt Express. 2020 Nov 23;28(24):37015-37025. doi: 10.1364/OE.412830.
We present a novel double-clad step-index few-mode fiber that operates as a five-sampled tunable true-time delay line. The unique feature of this design lies in its particular modal chromatic dispersion behavior, which varies in constant incremental steps among adjacent groups of modes. This property, which to the best of our knowledge has not been reported in any other few-mode fiber to date, is the key to tunable operation of radiofrequency signal processing functionalities implemented in few-mode fibers. The performance of the designed true-time delay line is theoretically evaluated for two different microwave photonics applications, namely tunable signal filtering and optical beamforming networks for phased array antennas. In the 35-nm optical wavelength tuning range of the C-band, the free spectral range of the microwave filter and the beam-pointing angle in the phased array antenna can be continuously tuned from 12.4 up to 57 GHz and 12.6 up to 90, respectively.
我们展示了一种新型的双包层阶跃折射率少模光纤,它可作为一个五采样可调谐实时延迟线。该设计的独特之处在于其特殊的模式色散特性,相邻模式组之间以恒定的增量步长变化。据我们所知,这种特性在其他少模光纤中尚未有报道,它是少模光纤中实现射频信号处理功能可调谐操作的关键。针对两种不同的微波光子学应用,即可调谐信号滤波和相控阵天线的光束形成网络,对所设计的实时延迟线的性能进行了理论评估。在C波段35纳米的光波长调谐范围内,微波滤波器的自由光谱范围和相控阵天线中的波束指向角可分别从12.4GHz连续调谐至57GHz,以及从12.6连续调谐至90。