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Luminescence induced by electrons outside zinc oxide nanoparticles driven by intense terahertz pulse trains

机译:强太赫兹脉冲序列驱动的氧化锌纳米粒子外部电子诱导的发光

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摘要

We investigated the behaviours of electrons from ZnO nanoparticles via a strong terahertz field. Luminescence from ZnO nanoparticles and surrounding nitrogen molecules was observed when the nanoparticles were irradiated with a terahertz free-electron laser (FEL). These excitations arose from the collision of electrons released via field electron emission with the ZnO nanoparticles and neighbouring nitrogen molecules. The strong excitation frequency dependence of the luminescence reflected the kinetic energy and trajectory of electrons outside the nanoparticles. We also observed spectral changes in the luminescence during macropulses of the FEL, even though the carrier lifetime of the nanoparticles was shorter than the interval between the micropulses. These changes were caused by the nanoparticles becoming charged due to electron emission, resulting in the electrons being re-emitted outside the nanoparticles. The electrons outside the nanoparticles were accelerated more efficiently by the terahertz field than the electrons inside the nanoparticles, and thus the motion of these exterior electrons provided a new excitation path.
机译:我们通过强太赫兹场研究了ZnO纳米粒子中电子的行为。当用太赫兹自由电子激光(FEL)照射纳米颗粒时,观察到ZnO纳米颗粒和周围的氮分子的发光。这些激发源于通过场电子发射释放的电子与ZnO纳米粒子和邻近的氮分子的碰撞。发光的强烈激发频率依赖性反映了纳米粒子外部电子的动能和轨迹。我们还观察到了FEL大脉冲过程中发光的光谱变化,即使纳米粒子的载流子寿命短于微脉冲之间的间隔。这些变化是由于纳米粒子由于电子发射而带电,导致电子重新发射到纳米粒子外部。太赫兹场比纳米粒子内部的电子更有效地加速了纳米粒子外部的电子,因此这些外部电子的运动提供了新的激发路径。

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