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Quantum sensing and imaging of a topological antiferromagnet Mn<sub>3</sub>Sn

ORAL

Abstract

Antiferromagnetic (AF) spintronics shows promise for next-generation computing technologies with improved density, stability, and energy efficiency in comparison with its ferromagnetic counterpart. The AF Weyl semimetal Mn3Sn possesses a topologically protected band structure, non-collinear magnetic order, and spontaneous time reversal symmetry breaking, enabling exceptionally large magneto-transport and magneto-thermal responses which may be exploited for a broad range of spintronics applications. Despite these potential benefits, direct access to the magnetic domains and magnetic spin behaviors in Mn3Sn remains a formidable challenge for the current state of the art. The major challenge results from the vanishingly small net magnetic moment of the Neél vector, which is difficult to access using existing magnetometry techniques. In this work, we use nitrogen-vacancy (NV) centers, optically active point defects in diamond, to image the local spin textures in polycrystalline Mn3Sn thin films on a sub-micron length scale. We also probe the underlying spin dynamics in Mn3Sn using NV relaxometry. Our results highlight the unique capabilities of NV centers as functional quantum sensors for investigating the magnetic properties of emergent topological antiferromagnets.

Presenters

  • Gerald Q Yan

    University of California, San Diego

Authors

  • Gerald Q Yan

    University of California, San Diego

  • Senlei Li

    University of California, San Diego

  • Hanyi Lu

    University of California, San Diego

  • Mengqi Huang

    University of California, San Diego

  • Yuxuan Xiao

    University of California, San Diego, Center for Memory and Recording Research, UC San Diego, Center for Memory and Recording Research, University of California San Diego

  • Luke Wernert

    Colorado State University

  • Jeffrey A Brock

    University of California, San Diego

  • Eric E Fullerton

    University of California, San Diego, Center for Memory and Recording Research, UC San Diego, Center for Memory and Recording Research, University of California San Diego

  • Hua Chen

    Colorado State University

  • Hailong Wang

    University of California, San Diego

  • Chunhui Rita Du

    University of California, San Diego