Field-free switching in perpendicular Ta/CoFeB/MgO multilayers achieved by annealing temperature gradient

Author:

Wang Shuanghai1ORCID,Dai Xingze1ORCID,He Kun1,Wang Jin1,Zhang Xiaolong1,Guo Qixun2ORCID,Feng Guanqun1ORCID,Xu Yongkang1,Deng Yafeng1ORCID,Liu Ruobai3ORCID,Du Jun3ORCID,Wang Yong-Lei4ORCID,Wang Chao5ORCID,Xu Yongbing1,He Liang1ORCID

Affiliation:

1. State Key Laboratory of Spintronics Devices and Technologies, School of Electronic Science and Engineering, Nanjing University 1 , Nanjing 210023, China

2. Ji Hua Laboratory 2 , Foshan 528000, China

3. National Laboratory of Solid State Microstructures and Department of Physics, Nanjing University 3 , Nanjing 210093, China

4. Research Institute of Superconductor Electronics, School of Electronic Science and Engineering, Nanjing University 4 , Nanjing 210023, China

5. Institute of Nanosurface Science and Engineering, College of Mechatronics and Control Engineering, Shenzhen University 5 , Shenzhen 518060, China

Abstract

Current flowing through heavy metals generates spin current by the spin Hall effect (SHE), and spin current exerts a torque on the adjacent magnetic layer, thereby switching the magnetization direction of the magnetic layer. Normally, an external magnetic field must be used to break symmetry in the response to the SHE torque, to realize deterministic switching. However, the presence of magnetic fields increases the difficulty in integrating spintronic devices with complementary metal-oxide-semiconductor. Thus, field-free spin–orbit torque switching has been a research hotspot. Here, symmetry-breaking has been realized by tilting the sample during the annealing process, resulting in a non-uniform diffusion of Ta atoms in the samples along the temperature gradient (x-direction), which was confirmed by transmission electron microscope mapping. As a result, the sample has demonstrated deterministic switching, in the absence of an external magnetic field, with a switching ratio of up to 88% and the critical current density of 1.5 × 107 A/cm2. Tilting annealing is a simple approach to achieve field-free switching.

Funder

National Natural Science Foundation of China

the National Natural Science Foundation of China

the Natural Science Foundation of Jiangsu Province of China

Publisher

AIP Publishing

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