Ródenas Airán, Nejadmalayeri Amir H, Jaque Daniel, Herman Peter
GIEL, Departamento de Física de Materiales, Facultad de Ciencias, Universidad Autónoma de Madrid, Madrid 28049, Spain.
Opt Express. 2008 Sep 1;16(18):13979-89. doi: 10.1364/oe.16.013979.
We report on the confocal Raman characterization of the micro-structural lattice changes induced during the high-repetition rate ultrafast laser writing of buried optical waveguides in lithium niobate (LiNbO(3)) crystals. While the laser beam focal volume is characterized by a significant lattice expansion together with a high defect concentration, the adjacent waveguide zone is largely free of defects, undergoing only slight rearrangement of the oxygen octahedron in the LiNbO(3) lattice. The close proximity of these two zones has been found responsible for the propagation losses of the guided light. Subjacent laser-induced periodic micro-structures have been also observed inside the laser focal volume, and identified with a strong periodic distribution of lattice defects.
我们报告了在铌酸锂(LiNbO₃)晶体中写入掩埋光波导的高重复率超快激光写入过程中诱导的微结构晶格变化的共焦拉曼表征。虽然激光束焦斑体积的特征是晶格显著膨胀以及高缺陷浓度,但相邻的波导区域基本无缺陷,仅经历LiNbO₃晶格中氧八面体的轻微重排。已发现这两个区域的紧密相邻是导致导光传播损耗的原因。在激光焦斑体积内还观察到了下层激光诱导的周期性微结构,并确定其具有晶格缺陷的强周期性分布。