Dipartimento di Ingegneria dell'Informazione, Elettronica e Telecomunicazioni, Sapienza Università di Roma, Rome, Italy.
Opt Lett. 2011 Dec 15;36(24):4755-7. doi: 10.1364/OL.36.004755.
We report on the investigation and characterization of an optically tunable filtering effect, observed in a waveguide grating made of alternated strips of photocurable polymer and a mixture of azo-dye-doped liquid crystal. The grating is sandwiched between two borosilicate glasses, one of which includes an ion-exchanged channel waveguide, which confines the optical signal to be filtered. Exposure to a low power visible light beam modifies the azo-dye molecular configuration, thus allowing the filtered wavelength to be tuned over a 6.6 nm range. Simulations of the filtering response are well described with our experimental findings.
我们报告了在由光固化聚合物交替条和掺杂偶氮染料液晶混合物制成的波导光栅中观察到的可调谐滤波效果的研究和特性。该光栅夹在两块硼硅酸盐玻璃之间,其中一块玻璃包含一个离子交换通道波导,用于限制要过滤的光信号。低功率可见光的照射会改变偶氮染料的分子结构,从而使滤波波长在 6.6nm 的范围内可调谐。滤波响应的模拟很好地描述了我们的实验结果。