Applied Physics Laboratory, University of Washington, Seattle, Washington 98105, USA.
Opt Lett. 2011 Aug 1;36(15):2853-5. doi: 10.1364/OL.36.002853.
Organic materials with a high second-order optical nonlinearity have an important application for the next generation of computing, telecommunications, and other industries. Because of a high electro-optic coefficient and low dielectric constant, N-benzyl-2-methyl-4-nitroaniline (BNA) single crystals have been grown and their optical properties have been extensively studied. In this Letter, a poled BNA thin film material was prepared through simultaneous vacuum evaporation and laser-assisted electrical poling. The linear electro-optic coefficients of BNA were measured by a Young's two-slit interference electro-optic measurement method. The dependence of the resulting electro-optic properties on optical power was explored. Enhancement induced by laser illumination was demonstrated. The BNA thin film can exhibit an r(33) value comparable to that of BNA single crystals.
具有高二阶光学非线性的有机材料对于下一代计算、电信和其他行业具有重要的应用。由于具有高电光系数和低介电常数,N-苄基-2-甲基-4-硝基苯胺(BNA)单晶已经被生长,并对其光学性质进行了广泛的研究。在本Letter 中,通过同时真空蒸发和激光辅助电畴极化制备了极化 BNA 薄膜材料。通过杨氏双缝干涉电光测量方法测量了 BNA 的线性电光系数。研究了电光性能对光功率的依赖性。证明了激光照射引起的增强。BNA 薄膜可以表现出与 BNA 单晶相当的 r(33)值。