Jung Jaehoon, Lee Yong Wook
Department of Electronics and Electrical Engineering, Dankook University, 152 Jukjeon-ro, Suji-gu, Gyeonggi-do, Yongin 16890, Korea.
School of Electrical Engineering, Pukyong National University, 45 Yongso-ro, Nam-gu, Busan 48513, Korea.
J Nanosci Nanotechnol. 2020 Jan 1;20(1):460-469. doi: 10.1166/jnn.2020.17220.
In this paper, we propose a universal wavelength tuning scheme for a first-order optical fiber multiwavelength filter based on a polarization-diversified loop structure (PDLS), which is comprised of a polarization beam splitter, two sets of a half-wave plate (HWP) and a quarter-wave plate (QWP), and two polarization-maintaining fiber (PMF) segments. First, the polarization conditions, which should be satisfied to continuously tune the absolute wavelength of a transmittance function with an arbitrary transmission spectrum, are explained based on the continuous wavelength tuning mechanism of the flat-top band transmittance, which was previously reported in the PDLS-based passband-flattened first-order multiwavelength filter. Then, by considering the effect of the four waveplates (i.e., two HWPs and two QWPs) and two PMF segments on the output polarization of each element comprising the filter, we suggest a systematic scheme to find the azimuth angles of the four waveplates for continuous wavelength tuning of the arbitrary transmittance function. Three hundred sixty sets of the four waveplate azimuth angles, which give additional phase shifts of 1-360° (with a step of 1°) to an arbitrarily chosen transmittance function, are obtained with the suggested angle finding approach. Wavelength-tuned transmission spectra are displayed at eight waveplate angle sets, which are chosen from among the above angle sets so that they can induce extra phase shifts of 0, 45, 90, 135, 180, 225, 270, and 315° to the original transmittance function. These spectra prove that the proposed scheme can be applied to the wavelength tuning of every transmittance function of the PDLS-based first-order multiwavelength filter.
在本文中,我们提出了一种基于偏振多样化环路结构(PDLS)的一阶光纤多波长滤波器的通用波长调谐方案,该结构由一个偏振分束器、两组半波片(HWP)和四分之一波片(QWP)以及两段保偏光纤(PMF)组成。首先,基于先前在基于PDLS的通带平坦化一阶多波长滤波器中报道的平顶带透射率的连续波长调谐机制,解释了为连续调谐具有任意透射谱的透射率函数的绝对波长而应满足的偏振条件。然后,通过考虑四个波片(即两个HWP和两个QWP)以及两段PMF对构成滤波器的每个元件的输出偏振的影响,我们提出了一种系统方案来找到四个波片的方位角,以实现任意透射率函数的连续波长调谐。利用所提出的角度查找方法,获得了三百六十组四个波片方位角,这些方位角为任意选择的透射率函数提供了1 - 360°(步长为1°)的附加相移。在从上述角度组中选择的八个波片角度组处显示了波长调谐后的透射谱,以便它们可以对原始透射率函数引起0、45、90、135、180、225、270和315°的额外相移。这些光谱证明了所提出的方案可应用于基于PDLS的一阶多波长滤波器的每个透射率函数的波长调谐。