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THz characterization and demonstration of visible-transparent/terahertz-functional electromagnetic structures in ultra-conductive La-doped BaSnO3 Films

机译:掺La的BaSnO3超导薄膜中可见光/太赫兹功能电磁结构的THz表征和演示

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摘要

We report on terahertz characterization of La-doped BaSnO3 (BSO) thin-films. BSO is a transparent complex oxide material, which has attracted substantial interest due to its large electrical conductivity and wide bandgap. The complex refractive index of these films is extracted in the 0.3 to 1.5 THz frequency range, which shows a metal-like response across this broad frequency window. The large optical conductivity found in these films at terahertz wavelengths makes this material an interesting platform for developing electromagnetic structures having a strong response at terahertz wavelengths, i.e. terahertz-functional, while being transparent at visible and near-IR wavelengths. As an example of such application, we demonstrate a visible-transparent terahertz polarizer.
机译:我们报告了La掺杂BaSnO3(BSO)薄膜的太赫兹特性。 BSO是一种透明的复合氧化物材料,由于其较大的电导率和较宽的带隙而引起了广泛的关注。这些薄膜的复折射率是在0.3至1.5 THz的频率范围内提取的,在此宽频率范围内显示出类似金属的响应。这些膜在太赫兹波长处具有大的光导率,使得该材料成为开发电磁结构的有趣平台,该电磁结构在太赫兹波长处具有很强的响应,即太赫兹功能,而在可见光和近红外波长下是透明的。作为此类应用的一个示例,我们演示了可见透明的太赫兹偏振器。

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