Cite this article:
Chen Lei, Zhang Wei-Gang, Wang Li, Bai Zhi-Yong, Zhang Shan-Shan, Wang Biao, Yan Tie-Yi, Jonathan Sieg. Passive polarization rotator based on silica photonic crystal fiber for 1.31-μm and 1.55-μm bands via adjusting the fiber lengthJ. Chin. Phys. B, 2014, 23(10): 104220.
| Chen Lei, Zhang Wei-Gang, Wang Li, Bai Zhi-Yong, Zhang Shan-Shan, Wang Biao, Yan Tie-Yi, Jonathan Sieg. Passive polarization rotator based on silica photonic crystal fiber for 1.31-μm and 1.55-μm bands via adjusting the fiber lengthJ. Chin. Phys. B, 2014, 23(10): 104220. |
Passive polarization rotator based on silica photonic crystal fiber for 1.31-μm and 1.55-μm bands via adjusting the fiber length
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Abstract
A new polarization rotator based on the silica photonic crystal fiber is proposed. The proposed polarization rotator photonic crystal fiber (PR-PCF) possesses a triangle jigsaw-shape core region. The full-vector finite-element method is used to analyze the phenomenon of polarization conversion between the quasi-TE and quasi-TM modes. Numerical simulations show that the wavelengths of 1.31 μm and 1.55 μm are converted with a nearly 100% polarization conversion ratio with their matched coupling length and has a relatively strong realistic fabrication tolerance-100 nm on the y axis and 50 nm on the x axis. The full vectorial finite difference beam propagation method is used to confirm the performance of the proposed PR-PCF. -
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