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THz pulses from optically excited Fe-, Pt- and Ta-based spintronic heterostructures

机译:来自光学激发的Fe-,Pt和基于TA的旋转性异质结构的THz脉冲

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Spintronic heterostructures are considered to be the new generation terahertz (THz) sources because of their capability of producing high power and broadband THz radiation. Here, we provide a brief review on the state-of-the-art in this field. The optically excited bi- and tri-layer combinations of ferromagnetic and non-magnetic thin films have become increasingly popular. Towards optimising the THz conversion efficiency and broadband gapless spectrum from these THz emitters, various control parameters need to be taken into consideration. The inverse spin Hall effect in the heavy metal layer of the heterostructure is primarily responsible for the generation of THz pulses. A few new results on iron-, platinum- and tantalum-based heterostructures have also been reported here. It is observed that the Ta(2 nm)/Fe(2 nm)/Pt(2 nm) tri-layer heterostructure generates ~40(250)% stronger THz signal than the counterpart Fe(2 nm)/Pt(2 nm) (Fe(3 nm)/Ta(2 nm)) bi-layer heterostructure.
机译:由于其生产高功率和宽带THz辐射的能力,它们被认为是新一代Terahertz(THz)来源。 在这里,我们在这一领域的最先进的情况下简要审查。 铁磁性和非磁性薄膜的光学激发的双层和三层组合已经越来越流行。 为了优化来自这些THz发射器的THz转换效率和宽带无光谱,需要考虑各种控制参数。 异质结构的重金属层中的逆旋转霍尔效应主要是对THz脉冲的产生。 这里还在这里报道了在铁,铂和钽和钽的异质结构上的一些新结果。 观察到Ta(2nm)/ Fe(2nm)/ pt(2nm)三层异质结构产生〜40(250)%的THz信号,而不是对手Fe(2nm)/ pt(2nm) (Fe(3nm)/ ta(2nm))双层异质结构。

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