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Photothermal direct writing of metallic microstructure for frequency selective surface at terahertz frequencies

机译:太赫兹频率频率选择性表面的金属微结构的光热直接写入

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Maskless photothermal direct writing technique was investigated to fabricate planar microscale metallic structures. In this technique, we use a tightly focused nanosecond pulsed infrared light to heat the metallic thin film on substrate. With sufficient volumic power density, the metal inside a “hot spot” could be removed from substrate. This technique benefits from not only the enhanced optical absorption, thanks to the surface plasmon resonance of metallic thin film, but also the reduced thermal conductivity, due to the frequent boundary scattering of phonons inside the thin film. To verify the performance of our direct writing technique, a cross-slot periodic array is scribed in gold thin film on silica substrate. Such a pattern can serve as a frequency selective surface at terahertz, which has many applications in terahertz radio system, e. g. rejecting thermal noise before terahertz receiver or serving as reflectors in Fabry-Perot etalon for astronomy spectroscopy.
机译:研究了无掩模光热直接写入技术,以制造平面的微型金属结构。在这项技术中,我们使用紧密聚焦的纳秒脉冲红外光加热基板上的金属薄膜。在具有足够的体积功率密度的情况下,可以从基板上去除“热点”内部的金属。由于金属薄膜的表面等离子体共振,该技术不仅受益于增强的光吸收,而且由于声子在薄膜内部的频繁边界散射而降低了热导率。为了验证我们直接写入技术的性能,在二氧化硅衬底上的金薄膜中划出了一个缝隙周期阵列。这样的图案可以用作太赫兹的频率选择表面,其在太赫兹无线电系统(例如,太赫兹)中具有许多应用。 G。拒绝太赫兹接收器之前的热噪声,或在法布里-珀罗标准具中用作天文学光谱仪的反射器。

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