Désévédavy Frédéric, Renversez Gilles, Troles Johann, Brilland Laurent, Houizot Patrick, Coulombier Quentin, Smektala Frédéric, Traynor Nicholas, Adam Jean-Luc
Equipe Verres et Céramiques, UMR-CNRS 6226, Science Chimiques de Rennes, Université de Rennes I, 35042 Rennes Cedex, France.
Appl Opt. 2009 Jul 1;48(19):3860-5. doi: 10.1364/ao.48.003860.
We present the first fabrication, to the best of our knowledge, of chalcogenide microstructured optical fibers in Te-As-Se glass, their optical characterization, and numerical simulations in the middle infrared. In a first fiber, numerical simulations exhibit a single-mode behavior at 3.39 and 9.3 microm, in good agreement with experimental near-field captures at 9.3 microm. The second fiber is not monomode between 3.39 and 9.3 microm, but the fundamental losses are 9 dB/m at 3.39 microm and 6 dB/m at 9.3 microm. The experimental mode field diameters are compared to the theoretical ones with a good accordance.
据我们所知,我们首次制造了基于碲-砷-硒玻璃的硫族化物微结构光纤,对其进行了光学表征,并在中红外波段进行了数值模拟。在第一根光纤中,数值模拟显示在3.39微米和9.3微米处呈现单模行为,这与9.3微米处的实验近场捕获结果吻合良好。第二根光纤在3.39微米至9.3微米之间不是单模的,但在3.39微米处的基本损耗为9分贝/米,在9.3微米处为6分贝/米。实验模场直径与理论值进行了比较,吻合度良好。