| Literature DB >> 32962303 |
Yuri S Orlov1,2, Alexey E Sokolov1,2, Vyacheslav A Dudnikov1, Karina V Shulga2, Mikhail N Volochaev1, Sergey M Zharkov1,2, Nikolay P Shestakov1, Maxim A Vysotin1, Sergei G Ovchinnikov1,2.
Abstract
We have studied, both experimentally and theoretically, the unusual temperature dependence of the phonon spectra in NdCoO3, SmCoO3 and GdCoO3, where the Co3+ ion is in the low-spin (LS) ground state, and at the finite temperature, the high-spin (HS) term has a nonzero concentration nHS due to multiplicity fluctuations. We measured the absorption spectra in polycrystalline and nanostructured samples in the temperature range 3-550 K and found a quite strong breathing mode softening that cannot be explained by standard lattice anharmonicity. We showed that the anharmonicity in the electron-phonon interaction is responsible for this red shift proportional to the nHS concentration.Entities:
Keywords: multiplicity fluctuations; phonon spectra; rare-earth cobalt oxides
Mesh:
Substances:
Year: 2020 PMID: 32962303 PMCID: PMC7570745 DOI: 10.3390/molecules25184316
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1SEM images of nanostructured samples after ultrasonic treatment.
Figure 2Photos from a transmission electron microscope for nanostructured samples after ultrasonic treatment; scale bar, 50 nm.
Figure 3The absorption spectra of NdCoO3, SmCoO3 and GdCoO3, measured at T = 300 K.
Figure 4Comparison of absorption spectra of nanostructured (red) and polycrystalline (black) samples at room temperature. (a) GdCoO3; (b) SmCoO3; (c) NdCoO3.
Figure 5Temperature-dependent infrared absorption spectra for NdCoO3 (a), SmCoO3 (b) and GdCoO3 (c).
Figure 6The shift of the breathing-mode peak position for different samples depending on temperature measured (a) and calculated in Ch.4 (b). The calculations were performed for the following values of the spin gap : K; K; K.
Calculated and measured highest-energy optical phonons for GdCoO3.
| Mode | B2u | B3g | B2g |
|---|---|---|---|
| Energy, theor., meV | 67.3 | 68.4 | 70.4 |
| Energy, exper., meV | 66.3 | 68.8 | 73.3 |
Figure 7The temperature dependence of (a) the magnetic susceptibility; dots show the measured values; the dashed line is for the Gd3+ Curie–Weiss contribution (with the Co3+high-spin (HS) contribution shown by a solid line in the inset, where the difference of the measured and Gd contribution is shown by dots). (b) The volume expansion in GdCoO3 from our paper [12]. The solid line in (b) corresponds to the calculated low-spin (LS) volume at low T and HS volume calculated in harmonic approximation at high T; the deviation of the experimental dotted line demonstrates the lattice anharmonicity effect at T > 1000K.