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Mechanism of optical terahertz-transmission modulation in an organic/inorganic semiconductor interface and its application to active metamaterials

机译:有机/无机半导体界面中光太赫兹传输调制的机理及其在活性超材料中的应用

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摘要

Terahertz (THz) transmission modulation through copper phthalocyanine (CuPc)-coated Si under various laser light irradiation conditions was investigated using THz time-domain spectroscopy. The charge carrier transfer from Si to CuPc is crucial for photo-induced metallization, and the thickness of the CuPc layer is a critical parameter for achieving high charge carrier density for metallization. Transmission through a split-ring resonator array metamaterial, fabricated on CuPc-coated Si, can be efficiently modulated by laser light irradiation. Our findings may open the way for various types of metamaterials using organic conjugated materials that are suitable for easy device fabrication using printing technologies.
机译:使用太赫兹时域光谱技术研究了在各种激光照射条件下通过酞菁铜(CuPc)包覆的硅的太赫兹(THz)传输调制。从Si到CuPc的电荷载流子转移对于光诱导金属化至关重要,而CuPc层的厚度对于实现金属化的高电荷载流子密度至关重要。可以通过激光辐照有效地调制通过在镀有CuPc的Si上制造的开口环谐振器阵列超材料的传输。我们的发现可能会为使用有机共轭材料的各种超常材料开辟道路,这些材料适用于使用印刷技术轻松进行设备制造。

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