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通过使用一种特殊设计的向列型液晶混合物实现太赫兹超材料的热致可调性。

Thermally induced tunability of a terahertz metamaterial by using a specially designed nematic liquid crystal mixture.

作者信息

Kowerdziej Rafał, Olifierczuk Marek, Parka Janusz

出版信息

Opt Express. 2018 Feb 5;26(3):2443-2452. doi: 10.1364/OE.26.002443.

Abstract

The search for new low loss nematic liquid crystal mixtures with enhanced birefringence and low temperature of nematic-to-isotropic phase transition plays a pivotal role in a development of new applications in the emerging field of thermally tunable metamaterials. Here we maximize thermally induced tunability of a terahertz metamaterial by using a specially designed nematic liquid crystal mixture. It is shown that the resonant response of a metamaterial device can be effectively tuned both in terms of its magnitude and wavelength with the spectral tunability approaching the theoretical limit of 8 GHz. Electromagnetic simulations confirm our tests and match the experimental observations well. The suggested approach opens new routes for next-generation soft-matter-based filtering and sensing components and devices.

摘要

寻找具有增强双折射和低向列相-各向同性相变温度的新型低损耗向列型液晶混合物,在新兴的热可调超材料领域新应用的开发中起着关键作用。在这里,我们通过使用一种特殊设计的向列型液晶混合物,使太赫兹超材料的热致可调性最大化。结果表明,超材料器件的共振响应在幅度和波长方面都能得到有效调节,光谱可调性接近8GHz的理论极限。电磁模拟证实了我们的测试结果,并与实验观测结果非常吻合。所提出的方法为下一代基于软物质的滤波和传感组件及器件开辟了新途径。

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