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Transmitted spectral modulation of double-ring resonator using liquid crystals in terahertz range

机译:使用太赫兹范围的液晶的双环谐振器的透射光谱调制

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Metamaterials with subwavelength structural features show unique electromagnetic responses that are unattainable with natural materials. Recent research on these artificial materials has been pushed forward to the terahertz region because of potential applications in biological fingerprinting, security imaging, remote sensing, and high frequency magnetic and electric resonant devices. Active control of their properties could further facilitate and open up new applications in terms of modulation and switching. Liquid crystals, which have been the subject of research for more than a century, have the unique properties for the development of many other optical components such as light valves, tunable filters and tunable lenses In this paper, we investigated the transmitted spectral modulation in terahertz range by using liquid crystals (5CB and TEB300) covering on the fabricated double-ring resonators to realize the shift of the resonance frequency. Our obtained results indicate the low frequency resonance shows the obvious blue-shift, while the location of high frequency resonance is nearly unchanged. We believe this phenomenon is related to not only the refractive index of the covering liquid crystals but also the resonant mechanism of both resonances.
机译:具有亚波长结构特征的超材料显示出独特的电磁响应,这是天然材料无法实现的。由于在生物指纹,安全成像,遥感以及高频磁和电共振设备中​​的潜在应用,对这些人造材料的最新研究已被推进到太赫兹地区。主动控制它们的特性可以进一步促进和打开调制和开关方面的新应用。液晶作为一个多世纪以来一直是研究的主题,它对于开发其他许多光学组件(如光阀,可调滤光片和可调透镜)具有独特的性能。在本文中,我们研究了以太赫兹为单位的透射光谱调制通过使用覆盖在所制造的双环谐振器上的液晶(5CB和TEB300)来实现该范围,以实现谐振频率的偏移。我们获得的结果表明,低频共振表现出明显的蓝移,而高频共振的位置几乎不变。我们认为这种现象不仅与覆盖液晶的折射率有关,而且与两个共振的共振机制有关。

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