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Advanced techniques for all-electrical spectroscopy on spin caloric phenomena
Authors:R Huber  P Klemm  S Neusser  B Botters  A Wittmann  M Weiler  STB Goennenwein  C Heyn  M Schneider  P B?ni  D Grundler
Institution:1. Department of Theoretical and Experimental Physics, National Research Tomsk Polytechnic University, 634050 Tomsk, Russia;2. NanoCenter “Nanotechnology and Nanomaterials”, G.R. Derzhavin Tambov State University, 392000 Tambov, Russia;3. Institute of High-Current Electronics, Siberian Branch, Russian Academy of Sciences, 634055 Tomsk, Russia;4. Fraunhofer Institute for Interfacial Engineering and Biotechnology IGB, 70569 Stuttgart, Germany
Abstract:Spin-dependent properties of nanomagnets and magnetic/nonmagnetic hybrid systems have gained a renewed interest after the discovery of spin caloric transport phenomena. To explore such properties in detail, advanced techniques need to be developed. In this paper we report novel approaches to study both the magneto–thermal and magneto–mechanical characteristics of hybrid systems. These techniques involve in particular broadband spectroscopy of spin dynamics and surface acoustic waves in the GHz frequency regime. By these means we investigate ferromagnet/semiconductor hybrid systems to explore spin pumping and the Seebeck effect as well as ferromagnet/piezoelectric hybrid systems to address magneto–mechanical coupling at high frequencies.
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