Markos Christos, Kubat Irnis, Bang Ole
DTU Fotonik, Department of Photonics Engineering, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark.
Sci Rep. 2014 Aug 14;4:6057. doi: 10.1038/srep06057.
The combination of chalcogenide glasses with polymer photonic crystal fibers (PCFs) is a difficult and challenging task due to their different thermo-mechanical material properties. Here we report the first experimental realization of a hybrid polymer-chalcogenide PCF with integrated As2S3 glass nanofilms at the inner surface of the air-channels of a poly-methyl-methacrylate (PMMA) PCF. The integrated high refractive index glass films introduce distinct antiresonant transmission bands in the 480-900 nm wavelength region. We demonstrate that the ultra-high Kerr nonlinearity of the chalcogenide glass makes the polymer PCF nonlinear and provides a possibility to shift the transmission band edges as much as 17 nm by changing the intensity. The proposed fabrication technique constitutes a new highway towards all-fiber nonlinear tunable devices based on polymer PCFs, which at the moment is not possible with any other fabrication method.
由于硫系玻璃和聚合物光子晶体光纤(PCF)具有不同的热机械材料特性,将它们结合是一项困难且具有挑战性的任务。在此,我们报告了首个混合聚合物 - 硫系PCF的实验实现,该光纤在聚甲基丙烯酸甲酯(PMMA)PCF的空气通道内表面集成了As2S3玻璃纳米薄膜。集成的高折射率玻璃薄膜在480 - 900 nm波长区域引入了明显的反谐振传输带。我们证明,硫系玻璃的超高克尔非线性使聚合物PCF具有非线性,并提供了通过改变光强将传输带边缘移动多达17 nm的可能性。所提出的制造技术为基于聚合物PCF的全光纤非线性可调谐器件开辟了一条新途径,而目前其他任何制造方法都无法实现这一点。