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Terahertz-field-induced ionization effect in a single nano island

机译:Terehertz-场诱导的单个纳米岛中的电离效果

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In this report, we present a novel approach to exploit the nonlinear response of terahertz (THz) field allowing the observation of ionization phenomenon in a single metal nano island. Because it is not easy to access such high power THz source to generate field over the threshold of the materials, fundamental studies on nonlinear terahertz waves and their applications in spectroscopy have been limited thus far. We are able to overcome this limitation through the use of a metallic nano island embedded in a slot antenna which strongly confines the terahertz electric field driving the system into a highly nonlinear regime. The structure, composed of a nano slot antenna and a nano island located at the center, highly confines THz electromagnetic field at the center of the structure, resulting in huge field enhancement by orders of magnitude at a specific frequency. Electrons on a metallic surface experience a ponderomotive force in a highly confined and enhanced THz electric field directed towards the weak field area by a field gradient. As a result, the accelerated electrons acquire enough energy to ionize ambient carbon atoms. It has to be stressed that it is the first time to observe the ionization of atoms induced by the enhanced terahertz radiation.
机译:在本报告中,我们提出了一种新颖的方法来利用太赫兹(THz)场的非线性响应,允许在单个金属纳米岛中观察电离现象。因为不容易访问这种高功率THz源以通过材料的阈值产生现场,因此到目前为止,对非线性太赫兹波的基本研究及其在光谱学中的应用已经受到限制。我们能够通过使用嵌入在槽天线中的金属纳米岛来克服这种限制,这强烈地将Terahertz电场驱动系统进入高度非线性状态。由纳米槽天线和位于中心的纳米岛组成的结构,高度限制了结构中心的THz电磁场,导致特定频率的幅度级的巨大场增强。金属表面上的电子在高度限制和增强的THz电场中经历了对弱场区域的高度限制和增强的THz电场的思考力。结果,加速电子获得足够的能量以电离环境碳原子。必须强调的是,这是第一次观察由增强的太赫兹辐射诱导的原子电离。

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