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Thermal tunability in terahertz metamaterials fabricated on strontium titanate single-crystal substrates

机译:钛酸锶单晶衬底上太赫兹超材料的热可调性

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摘要

We report an experimental demonstration of thermal tuning of resonance frequency in a planar terahertz metamaterial consisting of a gold split-ring resonator array fabricated on a bulk single-crystal strontium titanate (SrTiO_(3)) substrate. Cooling the metamaterial starting from 409K down to 150K causes about a 43percent shift in resonance frequency, and there is very little variation in resonance strength. The resonance shift is due to the temperature-dependent dielectric constant of the strontium titanate. The experiment opens up avenues for designing tunable terahertz devices by exploiting the temperature-sensitive characteristic of high dielectric constant substrates and complex metal oxide materials.
机译:我们报告了一个实验演示的共振频率在平面太赫兹超材料中的谐振频率的热调谐,该太赫兹超材料由在散装单晶钛酸锶(SrTiO_(3))衬底上制造的金开口环谐振器阵列组成。将超材料从409K冷却到150K会导致共振频率发生约43%的偏移,并且共振强度几乎没有变化。共振位移归因于钛酸锶的随温度变化的介电常数。通过利用高介电常数衬底和复杂的金属氧化物材料的温度敏感特性,该实验为设计可调谐太赫兹器件开辟了道路。

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