Low-symmetry quantum materials for magnetization manipulation
ORAL
Abstract
Spin-orbit torque (SOT) driven deterministic control of the magnetization state of a magnet with perpendicular magnetic anisotropy (PMA) is key to next generation spintronic applications including non-volatile, ultrafast, and energy efficient data storage devices. But field-free deterministic switching of perpendicular magnetization remains a challenge because it requires an out-of-plane anti-damping torque, which is not allowed in conventional spin source materials such as heavy metals (HM) and topological insulators due to the system's symmetry. The exploitation of low-crystal symmetries in emergent quantum materials offers a unique approach to achieve SOTs with unconventional forms. We will discuss our experiments demonstrating field-free deterministic magnetic switching of perpendicularly polarized magnets employing an out-of-plane anti-damping SOT generated in layered WTe2 system.
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Publication: arXiv 2012.12388
Presenters
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Simranjeet Singh
Carnegie Mellon Univ., Carnegie Mellon University
Authors
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Simranjeet Singh
Carnegie Mellon Univ., Carnegie Mellon University