论文标题

基于过渡金属和半金属/PT多层的Spintronic Thz发射器

Spintronic THz emitters based on transition metals and semi-metals/Pt multilayers

论文作者

Hawecker, J., Rongione, E., Markou, A., Krishnia, S., Godel, F., Collin, S., Lebrun, R., Tignon, J., Mangeney, J., Boulier, T., George, J. -M., Felser, C., Jaffrès, H., Dhillon, S.

论文摘要

基于铁磁/重金属(FM/HM)异质结构中的旋转旋转霍尔效应的Spintronic Terahertz(THZ)发射器(Ste)已成为THZ脉冲产生的重要来源。这些接口在纳米水平上的设计,材料和控制对于设计其THZ发射特性至关重要。在这项工作中,我们利用材料和界面工程来提高THZ Spintronic发射,对通过多种沟通方法进行了对此类结构进行优化的研究。这包括:应用HM/FM连接的多堆栈及其在三层结构中的应用,使用旋转链接同时增强了THZ发射的场并减少使用厚的PT层以减少光学吸收的使用,以及使用半米的使用,以增加旋转旋转偏振和THZ的偏振。通过这些方法,可以实现THZ场的显着增强。重要的是,考虑到光吸收允许阐明新现象的允许,例如使用THZ光谱法之间的旋转扩散长度与自旋 - 链之间的关系,并可能区分半米中的自我和界面自旋转换转换。

Spintronic terahertz (THz) emitters (STE) based on the inverse spin Hall effect in ferromagnetic/heavy metal (FM/HM) heterostructures have become important sources for THz pulse generation. The design, materials and control of these interfaces at the nanometer level has become vital to engineer their THz emission properties.In this work, we present studies of the optimization of such structures through a multi-pronged approach, taking advantage of material and interface engineering to enhance the THz spintronic emission. This includes: the application of multi-stacks of HM/FM junctions and their application to trilayer structures, the use of spin-sinks to simultaneously enhance the THz emitted fields and reduce the use of thick Pt layers to reduce optical absorption, and the use of semi-metals to increase the spin polarization and thus the THz emission. Through these approaches, significant enhancements of the THz field can be achieved. Importantly, taking into account the optical absorption permits to elucidate novel phenomena such as the relation between the spin diffusion length and the spin-sink using THz spectroscopy, as well as possibly distinguishing between self and interface spin-to-charge conversion in semi-metals.

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