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首页> 外文期刊>Journal of the European Ceramic Society >New polaritonic materials in the THz range made of directionally solidified halide eutectics
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New polaritonic materials in the THz range made of directionally solidified halide eutectics

机译:定向凝固的卤化物共晶体制成的THz范围内的新型极化材料

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摘要

Directionally solidified alkali halide binary eutectics have been recently proposed as THz polaritonic metamaterials based on their ordered microstructure and the suitable phonon-polariton resonances in the THz range of the spectrum. In the present work we focus on the search of new available eutectic systems both binary and ternary eutectics with well-ordered fibrous or lamellar microstructures and interparticle distances from 1 to several tens of microns. Simple effective homogenization models have been used to calculate effective permittivity and transmittance in the THz range of eutectic slices. This lets us identify the electromagnetic spectral ranges where hyperbolic dispersion is expected together with a significant transmittance value. The hyperbolic dispersion range shifts with microstructure size, that is, with growth parameters, showing that the materials response can be finely tuned by the manufacture conditions. Applications with these materials cover the electromagnetic range from 5 to 20 THz.
机译:定向凝固的碱金属卤化物二元共晶体最近被提出作为太赫兹极化超音速材料,基于它们的有序微结构和在太赫兹光谱范围内合适的声子-极化子共振。在目前的工作中,我们着重于寻找新的可用的共晶体系,包括具有良好序的纤维或层状微结构且粒子间距离为1至数十微米的二元和三元共晶。简单有效的均质化模型已用于计算在共晶切片的THz范围内的有效介电常数和透射率。这使我们能够确定预期双曲线弥散的电磁频谱范围以及显着的透射率值。双曲线分散范围随微观结构尺寸(即生长参数)而变化,表明可以通过制造条件对材料响应进行精细调整。这些材料的应用覆盖5至20 THz的电磁范围。

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