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Spin-Phonon Coupling in Altermagnetic CoNb<sub>₄</sub>Se<sub>₈</sub>

ORAL

Abstract

Altermagnetic states combine the spin-polarized electronic bands typical of ferromagnetism with antiferromagnetic spin order, which creates exciting opportunities for spintronic devices that are more efficient, faster, and smaller than the existing ferromagnetic devices. The intercalated transition metal dichalcogenide CoNb4Se8, which consists of 2H-NbSe2 layers separated by Co monolayers, has recently been confirmed to exhibit altermagnetism. This behavior derives from antiferromagnetic coupling between the ferromagnetic Co monolayers along the c-axis. While transport, neutron scattering, and magnetization measurements have all provided evidence for altermagnetism in CoNb4Se8, the role of spin-phonon coupling in this material remains unknown.

Here, we explore spin-phonon coupling in CoNb₄Se₈ via temperature-dependent Raman spectroscopy. We find that all Raman-active modes soften with increasing temperature, a behavior that can be captured with anharmonic models based on phonon decay. The in-plane Co Raman mode is unique, red-shifting rapidly yet insensitive to the altermagnetic transition at 160 K. Our results compare favorably with DFT calculations of CoNb₄Se₈, providing insights regarding the coupling of altermagnetic spin order to atomic displacements.

Publication: R. Regmi et al, arxiv:2408.08835, (2024)

Presenters

  • Dushyanthini Balasundaram

    George Mason University

Authors

  • Dushyanthini Balasundaram

    George Mason University

  • Resham B Regmi

    University of Notre Dame, Stavropoulos Center for Complex Quantum Matter, University of Notre Dame, Department of Physics and Astronomy, University of Notre Dame; Stavropoulos Centre for Complex Quantum Matter, University of Notre Dame

  • Igor I Mazin

    George Mason University, George Mason University, Quantum Science and Engineering Center, Depertment of Physics and Astronomy, George Mason University; Quantum Science and Engineering Centre, George Mason University

  • Nirmal J Ghimire

    University of Notre Dame, Stavropoulos Center for Complex Quantum Matter, Department of Physics and Astronomy, Stavropoulos Center for Complex Quantum Matter, University of Notre Dame, University of Notre Dame, Department of Physics and Astronomy, University of Notre Dame; Stavropoulos Centre for Complex Quantum Matter, University of Notre Dame

  • Patrick M Vora

    George Mason University