Cite this article:
Duanming Li, Guiyao Zhou. Theoretical simulation of a novel birefringent photonic crystal fiber with surface plasmon resonance around 1300 nmJ. Chin. Phys. B, 2016, 25(3): 034209.
| Duanming Li, Guiyao Zhou. Theoretical simulation of a novel birefringent photonic crystal fiber with surface plasmon resonance around 1300 nmJ. Chin. Phys. B, 2016, 25(3): 034209. |
Theoretical simulation of a novel birefringent photonic crystal fiber with surface plasmon resonance around 1300 nm
-
Abstract
In this paper, a novel birefringent photonic crystal fiber (PCF) with the silver-coated and liquid-filled air-holes along the vertical plane is designed. Simulation results show that the thickness of silver layer, the sizes of holes, and the refractive index of liquid strongly strengthen the gaps between two polarized directions. The surface plasmon resonance peak along y axis can be up to 675.8 dB/cm at 1.33 μm. The proposed PCF has important application in polarization devices, such as filters and beam splitters. -
DownLoad: