Magneto-Seebeck effect in magnetic tunnel junctions with perpendicular anisotropy

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Abstract

As one invigorated filed of spin caloritronics combining with spin, charge and heat current, the magneto-Seebeck effect has been experimentally and theoretically studied in spin tunneling thin films and nanostructures. Here we analyze the tunnel magneto-Seebeck effect in magnetic tunnel junctions with perpendicular anisotropy (p-MTJs) under various measurement temperatures. The large tunnel magneto-Seebeck (TMS) ratio up to −838.8% for p-MTJs at 200 K is achieved, with Seebeck coefficient S in parallel and antiparallel states of 6.7 mV/K and 62.9 mV/K, respectively. The temperature dependence of the tunnel magneto-Seebeck can be attributed to the contributing transmission function and electron states at the interface between CoFeB electrode and MgO barrier.

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Ning, K., Liu, H., Ju, Z., Fang, C., Wan, C., Cheng, J., … Ren, T. L. (2017). Magneto-Seebeck effect in magnetic tunnel junctions with perpendicular anisotropy. AIP Advances, 7(1). https://doi.org/10.1063/1.4974972

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