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Modification of spintronic terahertz emitter performance through defect engineering

机译:通过缺陷工程修改自旋电子太赫兹发射器的性能

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摘要

Spintronic ferromagneticon-magnetic heterostructures are novel sources for the generation of THz radiation based on spin-to-charge conversion in the layers. The key technological and scientific challenge of THz spintronic emitters is to increase their intensity and frequency bandwidth. Our work reveals the factors to engineer spintronic Terahertz generation by introducing the scattering lifetime and the interface transmission for spin polarized, non-equilibrium electrons. We clarify the influence of the electron-defect scattering lifetime on the spectral shape and the interface transmission on the THz amplitude, and how this is linked to structural defects of bilayer emitters. The results of our study define a roadmap of the properties of emitted as well as detected THz-pulse shapes and spectra that is essential for future applications of metallic spintronic THz emitters.
机译:自旋铁磁性/非磁性异质结构是基于层中自旋至电荷转换产生THz辐射的新颖来源。太赫兹自旋电子发射器的关键技术和科学挑战是增加其强度和频率带宽。我们的工作通过介绍自旋极化的非平衡电子的散射寿命和界面传输,揭示了工程设计自旋电子太赫兹的因素。我们阐明了电子缺陷散射寿命对光谱形状和界面传输对太赫兹振幅的影响,以及这与双层发射体的结构缺陷之间的关系。我们的研究结果确定了发射特性以及检测到的THz脉冲形状和光谱的路线图,这对于金属自旋电子THz发射器的未来应用至关重要。

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