Kim Do Kyung, Kim Jihoon, Lee Seul-Lee, Choi Sungwook, Kim Min Seok, Lee Yong Wook
Interdisciplinary Program of Biomedical Mechanical & Electrical Engineering, Pukyong National University, 45 Yongso-ro, Nam-gu, Busan 48513, Korea.
School of Electrical Engineering, Pukyong National University, 45 Yongso-ro, Nam-gu, Busan 48513, Korea.
J Nanosci Nanotechnol. 2020 Jan 1;20(1):344-350. doi: 10.1166/jnn.2020.17219.
In this paper, we propose a wavelength-tunable narrowband fiber multiwavelength filter based on polarization-diversified loop structure. The proposed filter consists of a polarization beam splitter, three half-wave plates (HWPs), two quarter-wave plates (QWPs) and two polarization-maintaining fiber (PMF) segments. The lengths of the two PMF segments are equal with each other. Among the five waveplates within the filter, a pair of an HWP and a QWP and the other pair of an HWP and a QWP are located in front of each PMF segment. The last HWP is placed after the second PMF and used to adjust the effective azimuthal angle of the second PMF. Azimuthal angle sets of the five waveplates, which can give additional phase shifts from 0 to 360° to the narrowband transmittance function derived from the Jones matrix formula, were theoretically found. Narrowband transmission spectra were calculated at eight waveplate angle sets selected among the angle sets derived above, which were designated as sets I, II, III, IV, V, VI, VII, and VIII that induced additional phase shifts from 0 to 315° (step: 45°) in the transmittance function. The calculated multiwavelength spectra clearly show that the narrowband multiwavelength spectrum can be wavelength-tuned by 0.1 nm as the waveplate angle set switches from set I to set VIII. This theoretical prediction was experimentally verified by appropriately controlling the azimuthal angle of each waveplate.
在本文中,我们提出了一种基于偏振分集环结构的波长可调谐窄带光纤多波长滤波器。所提出的滤波器由一个偏振分束器、三个半波片(HWP)、两个四分之一波片(QWP)和两个保偏光纤(PMF)段组成。两个PMF段的长度彼此相等。在滤波器内的五个波片中,一对HWP和QWP以及另一对HWP和QWP分别位于每个PMF段之前。最后一个HWP放置在第二个PMF之后,用于调整第二个PMF的有效方位角。从理论上找到了五个波片的方位角设置,这些设置可以给从琼斯矩阵公式导出的窄带透射函数提供从0到360°的附加相移。在从上述角度设置中选择的八个波片角度设置下计算了窄带透射光谱,这些设置被指定为I组、II组、III组、IV组、V组、VI组、VII组和VIII组,它们在透射函数中引起从0到315°(步长:45°)的附加相移。计算得到的多波长光谱清楚地表明,随着波片角度设置从I组切换到VIII组,窄带多波长光谱可以在0.1nm范围内进行波长调谐。通过适当控制每个波片的方位角,对这一理论预测进行了实验验证。