Electric field manipulation of spin chirality and skyrmion dynamic

Author:

Dai Bingqian1ORCID,Wu Di1ORCID,Razavi Seyed Armin1ORCID,Xu Shijie1,He Haoran1,Shu Qingyuan1,Jackson Malcolm1,Mahfouzi Farzad2,Huang Hanshen1ORCID,Pan Quanjun1ORCID,Cheng Yang1,Qu Tao1ORCID,Wang Tianyi1,Tai Lixuan1ORCID,Wong Kin1ORCID,Kioussis Nicholas2ORCID,Wang Kang L.1ORCID

Affiliation:

1. Departments of Electrical and Computer Engineering, Physics and Astronomy, and Material Science and Engineering, University of California, Los Angeles, Los Angeles, CA 90095, USA.

2. Department of Physics and Astronomy, California State University, Northridge, Los Angeles, CA 91330-8268, USA.

Abstract

The Dzyaloshinskii-Moriya interaction (DMI) is an antisymmetric exchange interaction that stabilizes spin chirality. One scientific and technological challenge is understanding and controlling the interaction between spin chirality and electric field. In this study, we investigate an unconventional electric field effect on interfacial DMI, skyrmion helicity, and skyrmion dynamics in a system with broken inversion symmetry. We design heterostructures with a 3d-5d atomic orbital interface to demonstrate the gate bias control of the DMI energy and thus transform the DMI between opposite chiralities. Furthermore, we use this voltage-controlled DMI (VCDMI) to manipulate the skyrmion spin texture. As a result, a type of intermediate skyrmion with a unique helicity is created, and its motion can be controlled and made to go straight. Our work shows the effective control of spin chirality, skyrmion helicity, and skyrmion dynamics by VCDMI. It promotes the emerging field of voltage-controlled chiral interactions and voltage-controlled skyrmionics.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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