da Silva Davinson Mariano, Kassab Luciana Reyes Pires, Siarkowski Acácio L, de Araújo Cid B
Opt Express. 2014 Jun 30;22(13):16424-30. doi: 10.1364/OE.22.016424.
We report the fabrication of waveguide amplifiers produced by RF-sputtering, using a PbO-GeO(2) glass (PGO glass) film codoped with Er(3+)/Yb(3+). RIB waveguides were obtained from PGO thin films using optical lithography followed by reactive ion etching process. The optical losses in the waveguide were ≈1.0 dB/cm and the maximum internal gain at 1.53 µm, with excitation at 980 nm, was 3 dB/cm. Nanostructured gold films deposited on the waveguides enhanced the Er(3+) ions photoluminescence (PL) by ≈400% in the red region and ≈30% in the infrared, under 980 nm pumping. The optical gain was enhanced and reached 6.5 dB/cm. The results demonstrate that the PGO waveguides, with or without gold nanoparticles, are promising for integrated photonics.
我们报道了通过射频溅射制备的波导放大器,该放大器使用了共掺杂Er(3+)/Yb(3+)的PbO-GeO(2)玻璃(PGO玻璃)薄膜。通过光刻技术然后进行反应离子蚀刻工艺,从PGO薄膜中获得了脊形波导。波导中的光损耗约为1.0 dB/cm,在980 nm激发下,1.53 µm处的最大内部增益为3 dB/cm。在980 nm泵浦下,沉积在波导上的纳米结构金膜在红色区域将Er(3+)离子的光致发光(PL)增强了约400%,在红外区域增强了约30%。光增益得到增强,达到了6.5 dB/cm。结果表明,有无金纳米颗粒的PGO波导在集成光子学方面都很有前景。