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Anharmonic Lattice Dynamics in Sodium Ion Conductors

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arxiv 2203.07955 v1 pith:QQUQRSCO submitted 2022-03-15 cond-mat.mtrl-sci

Anharmonic Lattice Dynamics in Sodium Ion Conductors

classification cond-mat.mtrl-sci
keywords phaseanharmonicdynamicslatticecharacterconductorscubicmodes
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We employ THz-range temperature-dependent Raman spectroscopy and first-principles lattice-dynamical calculations to show that the undoped sodium ion conductors Na$_3$PS$_4$ and isostructural Na$_3$PSe$_4$ both exhibit anharmonic lattice dynamics. The anharmonic effects in the compounds involve coupled host lattice -- Na$^+$ ion dynamics that drive the tetragonal-to-cubic phase transition in both cases, but with a qualitative difference in the anharmonic character of the transition. Na$_3$PSe$_4$ shows almost purely displacive character with the soft modes disappearing in the cubic phase as the change of symmetry shifts these modes to the Raman-inactive Brillouin zone boundary. Na$_3$PS$_4$ instead shows order-disorder character in the cubic phase, with the soft modes persisting through the phase transition and remaining active in Raman in the cubic phase, violating Raman selection rules for that phase. Our findings highlight the important role of coupled host lattice -- mobile ion dynamics in vibrational instabilities that are coincident with the exceptional conductivity in these Na$^+$ ion conductors.

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