Interplay between magnetic and lattice excitations and emergent multiple phase transitions in MnPSe3-x Sx

  • Kumar, Deepu
  • Hoang, Nguyen The
  • Sim, Yumin
  • Choi, Youngsu
  • Raju, Kalaivanan
  • ... Seong, Maeng-Je
  • 외 3명
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초록

The intricate interplay between spin and lattice degrees of freedom in two-dimensional magnetic materials plays a pivotal role in modifying their magnetic characteristics, engendering hybrid quasiparticles, and implementing functional devices. Herein, we present our comprehensive and in-depth investigations on magnetic and lattice excitations of MnPSe3-xSx (x=0, 0.63, and 1.68) alloys, utilizing temperature- and polarization-dependent Raman scattering. Our experimental results reveal the occurrence of multiple phase transitions, evidenced by notable changes in phonon self-energy and the appearance or splitting of phonon modes. These emergent phases are tied to the development of long and short-range spin-spin correlations, as well as to spin reorientations or magnetic instabilities. Our analysis of two-magnon excitations as a function of temperature and composition showcases their hybridization with phonons whose degree weakens with increasing x. Moreover, the suppression of spin-dependent phonon intensity in chemically most-disordered MnPSe3-xSx (x=1.68) suggests that chalcogen substitution offers a control knob of tuning spin and phonon dynamics by modulating concurrently superexchange pathways and a degree of trigonal distortions. © 2024 American Physical Society.

키워드

RAMAN-SCATTERINGLIGHT-SCATTERINGFERROMAGNETISMANTIFERROMAGNETISMCRYSTALPHONON
제목
Interplay between magnetic and lattice excitations and emergent multiple phase transitions in MnPSe3-x Sx
저자
Kumar, DeepuHoang, Nguyen TheSim, YuminChoi, YoungsuRaju, KalaivananUlaganathan, Rajesh KumarSankar, RamanSeong, Maeng-JeChoi, Kwang-Yong
DOI
10.1103/PhysRevB.110.064414
발행일
2024-08
유형
Article
저널명
Physical Review b
110
6