Enhancement of Spin-Orbit Torque Generation from Antiferromagnetic Ordering in PdCrO<sub>2</sub>
ORAL
Abstract
Efficient generation of current induced spin-orbit torque is one pathway to the development of energy efficient spintronic devices. One promising family of materials for this generation is non-colinear antiferromagnets, which are predicted to show large spin Hall conductivities and have the potential to generate unconventional torques. PdCrO2 is a layered antiferromagnet with a frustrated, non-collinear spin structure. We measure the spin-orbit torque efficiency from thin film PdCrO2 as a function of temperature and find that the efficiency decreases weakly with decreasing temperature until the Néel temperature (~34 K), where the efficiency increases sharply. We attribute this enhancement of spin-current generation to the antiferromagnetic ordering of PdCrO2.
*X.H., D.P., and D.R. acknowledge the support from SRC SUPREME center. The devices werefabricated using the shared facilities of the Cornell NanoScale Facility, a member of the NationalNanotechnology Coordinated Infrastructure (supported by the NSF via grant NNCI-2025233) andthe facilities of the the Cornell University Materials Research Science and Engineering Center (supported by the NSF, via grant DMR-1719875).
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Presenters
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Daniel Pharis
- Cornell University