作者
Tom Seifert, S Jaiswal, U Martens, J Hannegan, Lukas Braun, Pablo Maldonado, F Freimuth, A Kronenberg, J Henrizi, I Radu, E Beaurepaire, Y Mokrousov, Peter M Oppeneer, M Jourdan, G Jakob, Dmitry Turchinovich, LM Hayden, Martin Wolf, M Münzenberg, M Kläui, Tobias Kampfrath
发表日期
2016/7
期刊
Nature photonics
卷号
10
期号
7
页码范围
483-488
出版商
Nature Publishing Group UK
简介
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging and spectroscopy. It is thus highly desirable to have an efficient table-top emitter covering the 1–30 THz window that is driven by a low-cost, low-power femtosecond laser oscillator. So far, all solid-state emitters solely exploit physics related to the electron charge and deliver emission spectra with substantial gaps. Here, we take advantage of the electron spin to realize a conceptually new terahertz source that relies on three tailored fundamental spintronic and photonic phenomena in magnetic metal multilayers: ultrafast photoinduced spin currents, the inverse spin-Hall effect and a broadband Fabry–Pérot resonance. Guided by an analytical model, this spintronic route offers unique possibilities for systematic optimization. We find that a 5.8-nm-thick W/CoFeB/Pt trilayer generates ultrashort pulses fully covering the 1 …
引用总数
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