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Modification of spintronic terahertz emitter performance through defect engineering

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arxiv 1901.10011 v2 pith:TLHPPESQ submitted 2019-01-28 cond-mat.mes-hall

Modification of spintronic terahertz emitter performance through defect engineering

classification cond-mat.mes-hall
keywords spintronicemittersgenerationinterfacelifetimescatteringterahertztransmission
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Spintronic ferromagnetic/non-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.

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