Large voltage-controlled magnetic anisotropy effect in magnetic tunnel junctions prepared by deposition at cryogenic temperatures

Author:

Nozaki Takayuki1ORCID,Ichinose Tomohiro1ORCID,Uzuhashi Jun2ORCID,Yamamoto Tatsuya1ORCID,Konoto Makoto1ORCID,Yakushiji Kay1ORCID,Ohkubo Tadakatsu2ORCID,Yuasa Shinji1ORCID

Affiliation:

1. Research Center for Emerging Computing Technologies, National Institute of Advanced Industrial Science and Technology (AIST) 1 , Tsukuba, Ibaraki 305-8568, Japan

2. Research Center for Magnetic and Spintronic Materials, National Institute for Materials Science (NIMS) 2 , Tsukuba, Ibaraki 305-0047, Japan

Abstract

We investigated the influence of the buffer material and a cryogenic temperature deposition process on the voltage-controlled magnetic anisotropy (VCMA) effect for an ultrathin CoFeB layer in bottom-free type MgO-based magnetic tunnel junctions prepared by a mass production sputtering process. We used Ta and TaB buffers and compared the differences between them. The TaB buffer enabled us to form a flat and less-contaminated CoFeB/MgO interface by suppressing the diffusion of Ta with maintaining a stable amorphous phase. Furthermore, the introduction of cryogenic temperature deposition for the ultrathin CoFeB layer on the TaB buffer improved the efficiency of the VCMA effect and its annealing tolerance. Combining this with interface engineering employing an Ir layer for doping and a CoFe termination layer, a large VCMA coefficient of −138 ± 3 fJ/Vm was achieved. The developed techniques for the growth of ultrathin ferromagnet and oxide thin films using cryogenic temperature deposition will contribute to the development of high-performance spintronic devices, such as voltage-controlled magnetoresistive random access memories.

Funder

New Energy and Industrial Technology Development Organization

KAKENHI

Publisher

AIP Publishing

Subject

General Engineering,General Materials Science

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