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Effect of Thicknesses of Liquid Crystal Layers on Shift of Resonance Frequencies of Metamaterials

机译:液晶层厚度对超材料谐振频率偏移的影响

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A liquid crystal (LC) layer that is too thick exhibits a small terahertz birefringence due to the limited long-range force of the alignment layers that exert on it. An LC layer that is too thin has a small terahertz birefringence due to its invisibility to incident terahertz waves. Therefore, an LC layer may have a large terahertz birefringence at a specific thickness. It is well known that the birefringence of an LC layer dominates the shift of the resonance frequency of the metamaterial imbedded into the LC layer. As a result, this work studies the effect of the thicknesses of LC layers on the shift of the resonance frequencies of metamaterials. LC layers with various thicknesses ranging from 310 μm to 1487 μm are deposited on terahertz metamaterials, and each of the layers is aligned by two polyimide layers that are rubbed in a direction. The terahertz metamaterials have a maximum frequency shifting range of 21 GHz as 710 μm thick LC layers with mutually orthogonal rubbing directions are deposited on them. The maximum frequency shifting range arises from the competition between the long-range force of the polyimide layers and the interaction between the LC layers and their incident terahertz waves.
机译:由于对准层的有限长度的有限的力,液晶(LC)层太厚的液晶(LC)层具有小的太赫兹双折射。由于其对入射太赫兹波浪的隐形,太薄过薄的LC层具有小的太赫兹双折射。因此,LC层可以具有特定厚度的大型太赫兹双折射。众所周知,LC层的双折射在嵌入到LC层中的超材料的谐振频率的偏移主导。结果,该工作研究了LC层厚度对超材料的谐振频率偏移的影响。在太赫兹超材料上沉积具有310μm至1487μm的各种厚度的LC层,并且每个层由两个聚酰亚胺层对齐,该层在方向上擦拭。 Terahertz超材料的最大频率换档范围为21 GHz,为710μm厚的LC层,沉积在它们上。最大频移范围产生聚酰亚胺层的远程力与LC层与其入射太赫兹波之间的相互作用之间的竞争。

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