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Temperature-dependent phonon linewidths and shifts in bismuth from inelastic neutron scattering

Publication ,  Journal Article
Mao, C; Li, F; Niedziela, JL; Sable, A; Al-Qasir, II; Matsuda, M; Pajerowski, DM; Hong, T; Manley, ME; Delaire, O
Published in: Physical Review Materials
June 1, 2025

Bismuth exhibits a Peierls distortion away from a simple cubic structure, reflecting both an anharmonic potential energy surface and electron-phonon coupling in a semimetal. It has attracted considerable interest in studies of low-temperature thermal transport, thermoelectrics, and optical excitation of coherent phonon. Yet, the temperature-dependence of phonons in bismuth has remained relatively unexplored. We report extensive inelastic neutron scattering (INS) and first-principles simulations of the lattice dynamics in bismuth, including phonon energy shifts and linewidths as a function of temperature. Comprehensive four-dimensional data across the momentum (Q) - energy (E) space were collected at temperatures from 2 to 300 K. Moreover, the intrinsic linewidth of TA modes was resolved using inelastic neutron spin echo with a Wollaston prism apparatus, surpassing the limitations of conventional neutron spectrometry techniques. Our results quantify the softening of phonon frequencies and suppression of phonon lifetimes at elevated temperatures, with experiments and simulations showing excellent agreement. Further, we analyzed the scattering phase space through simulations, assessing the scattering channels between acoustic and optic phonon modes that dominate the thermalization of photo-excited coherent optic phonons. These findings enhance our understanding of phonon-phonon interactions in bismuth and provide insights into the influence of lattice anharmonicity on its thermal properties.

Duke Scholars

Published In

Physical Review Materials

DOI

EISSN

2475-9953

Publication Date

June 1, 2025

Volume

9

Issue

12

Related Subject Headings

  • 5104 Condensed matter physics
  • 4016 Materials engineering
  • 3403 Macromolecular and materials chemistry
 

Citation

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Mao, C., Li, F., Niedziela, J. L., Sable, A., Al-Qasir, I. I., Matsuda, M., … Delaire, O. (2025). Temperature-dependent phonon linewidths and shifts in bismuth from inelastic neutron scattering. Physical Review Materials, 9(12). https://doi.org/10.1103/6487-2cfr
Mao, C., F. Li, J. L. Niedziela, A. Sable, I. I. Al-Qasir, M. Matsuda, D. M. Pajerowski, T. Hong, M. E. Manley, and O. Delaire. “Temperature-dependent phonon linewidths and shifts in bismuth from inelastic neutron scattering.” Physical Review Materials 9, no. 12 (June 1, 2025). https://doi.org/10.1103/6487-2cfr.
Mao C, Li F, Niedziela JL, Sable A, Al-Qasir II, Matsuda M, et al. Temperature-dependent phonon linewidths and shifts in bismuth from inelastic neutron scattering. Physical Review Materials. 2025 Jun 1;9(12).
Mao, C., et al. “Temperature-dependent phonon linewidths and shifts in bismuth from inelastic neutron scattering.” Physical Review Materials, vol. 9, no. 12, June 2025. Scopus, doi:10.1103/6487-2cfr.
Mao C, Li F, Niedziela JL, Sable A, Al-Qasir II, Matsuda M, Pajerowski DM, Hong T, Manley ME, Delaire O. Temperature-dependent phonon linewidths and shifts in bismuth from inelastic neutron scattering. Physical Review Materials. 2025 Jun 1;9(12).

Published In

Physical Review Materials

DOI

EISSN

2475-9953

Publication Date

June 1, 2025

Volume

9

Issue

12

Related Subject Headings

  • 5104 Condensed matter physics
  • 4016 Materials engineering
  • 3403 Macromolecular and materials chemistry