Q Wang, Y Gu, C Chen, F Pan… - The Journal of Physical …, 2022 - ACS Publications
Transition-metal oxides (TMOs) constitute a key material family in spintronics because of mutually coupled degrees of freedom and tunable magneto-ionic properties. In this …
The paradigm shift of information carriers from charge to spin has long been awaited in modern electronics. The invention of the spin‐information transistor is expected to be an …
Spin textures, such as magnetic domain walls and skyrmions, have the potential to revolutionize electronic devices by encoding information bits. Although recent …
Magneto-ionics is an emerging actuation mechanism to control the magnetic properties of materials via voltage-driven ion motion. This effect largely relies on the strength and …
The exploration of ferroelectric phase transitions enables an in-depth understanding of ferroelectric switching and promising applications in information storage. However …
Electric field control of the exchange bias effect across ferromagnet/antiferromagnet (FM/AF) interfaces has offered exciting potentials for low-energy-dissipation spintronics. In particular …
Z Tan, Z Ma, L Fuentes, MO Liedke, M Butterling… - ACS …, 2023 - ACS Publications
Magneto-ionics refers to the control of magnetic properties of materials through voltage- driven ion motion. To generate effective electric fields, either solid or liquid electrolytes are …
Magnetic skyrmions are topologically protected swirling spin textures with great potential for future spintronic applications. The ability to induce skyrmion motion using mechanical strain …
Interconnected magnetic nanowire (NW) networks offer a promising platform for three- dimensional (3D) information storage and integrated neuromorphic computing. Here we …