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Observation of terahertz-radiation-induced ionization in a single nano island

机译:太赫兹辐射诱导的电离在单个纳米岛中的观察

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Terahertz (THz) electromagnetic wave has been widely used as a spectroscopic probe to detect the collective vibrational mode in vast molecular systems and investigate dielectric properties of various materials. Recent technological advances in generating intense THz radiation and the emergence of THz plasmonics operating with nanoscale structures have opened up new pathways toward THz applications. Here, we present a new opportunity in engineering the state of matter at the atomic scale using THz wave and a metallic nanostructure. We show that a medium strength THz radiation of 22?kV/cm can induce ionization of ambient carbon atoms through interaction with a metallic nanostructure. The prepared structure, made of a nano slot antenna and a nano island located at the center, acts as a nanogap capacitor and enhances the local electric field by two orders of magnitudes thereby causing the ionization of ambient carbon atoms. Ionization and accumulation of carbon atoms are also observed through the change of the resonant condition of the nano slot antenna and the shift of the characteristic mode in the spectrum of the transmitted THz waves.
机译:太赫兹(THz)电磁波已被广泛用作光谱探针,以检测巨大分子系统中的集体振动模式并研究各种材料的介电特性。产生强太赫兹辐射的最新技术进展以及以纳米级结构运行的太赫兹等离子体激元的出现为开拓太赫兹应用开辟了新途径。在这里,我们提供了使用太赫兹波和金属纳米结构以原子尺度工程化物质状态的新机会。我们表明,中等强度的THz辐射22?kV / cm可以通过与金属纳米结构的相互作用诱导周围碳原子的电离。所制备的结构由纳米缝隙天线和位于中心的纳米岛制成,可充当纳米间隙电容器,并将局部电场增强两个数量级,从而引起周围碳原子的电离。通过纳米缝隙天线谐振条件的变化和所传输的太赫兹波频谱中特征模式的变化,也可以观察到碳原子的电离和积累。

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