Perivolari Eleni, Fedotov Vassili A, Parka Janusz, Kaczmarek Malgosia, Apostolopoulos Vasilis
Physics and Astronomy, University of Southampton, Highfield SO17 1BJ, Southampton, UK.
Laboratory for Advanced Materials Processing, Empa, Swiss Federal Laboratories for Materials Science and Technology, Feuerwerkerstrasse 39, Thun 3602, Switzerland.
Nanophotonics. 2022 Apr 21;11(10):2341-2348. doi: 10.1515/nanoph-2022-0036. eCollection 2022 May.
Babinet complementary patterns of a spectrally tunable metamaterial incorporating a nematic liquid crystal is normally assumed to exhibit the same tuning range. Here we show that for a hybrid, liquid crystal-loaded metamaterial, the sensitivity of its terahertz resonances to the variations of the refractive index differs substantially for the two complementary patterns. This is due to a mismatch between the alignment of the liquid crystal and the direction of the local electric field induced in the metamaterial patterns. Furthermore, and more intriguingly, our experimental data indicate that it is possible to shift the resonance of the positive metamaterial pattern beyond the limit imposed by the alignment mismatch. Our analysis suggests that the observed anomalous frequency shift results from the orientational optical nonlinearity of a nematic liquid crystal.
通常认为,包含向列型液晶的光谱可调超材料的巴比涅互补图案具有相同的调谐范围。在此我们表明,对于一种混合的、加载液晶的超材料,其太赫兹共振对折射率变化的灵敏度在两种互补图案中存在显著差异。这是由于液晶的取向与超材料图案中感应的局部电场方向不匹配所致。此外,更有趣的是,我们的实验数据表明,有可能将正超材料图案的共振移至超出取向不匹配所施加的限制范围。我们的分析表明,观察到的异常频移是由向列型液晶的取向光学非线性引起的。