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Research Articles

A highly nonlinear and birefringent photonic crystal fiber with zero dispersion at 2 µm eye-safe spectral window

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Pages 676-681 | Received 02 Aug 2014, Accepted 24 Dec 2014, Published online: 04 Mar 2015
 

Abstract

A novel highly nonlinear and birefringent photonic crystal fiber with zero dispersion at 2 μm eye-safe spectral window is proposed in this paper. By using the full-vector finite-element method, the key propagation characteristics of the designed PCF are investigated at 2 μm eye-safe spectral window. Furthermore, a more effective and accurate method has been used to optimize the two small air holes diameters of d1 and the ratio of d/Λ at the wavelength of 2 μm. When the parameters of d1 and d/Λ are 0.2 μm and 0.91, the birefringence, nonlinearity and confinement loss can reach to an order of 10-2, 25.32  W-1·km-1, and 0.044 dB/m, respectively. The zero-dispersion coefficient of the designed PCF can be achieved at the wavelength of 2 μm.

Additional information

Funding

This work was supported by the National Natural Science Foundation of China [grant number 61178026], [grant number 61475134]; the Nature Science Foundation of Hebei Province, China [grant number E2012203035].

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