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Optical conductivity and vibrational spectra of the narrow-gap semiconductor FeGa3
| dc.creator | Martin, Catalin | |
| dc.creator | Martinez, V. A. | |
| dc.creator | Opačić, Marko R. | |
| dc.creator | Đurđić-Mijin, Sanja | |
| dc.creator | Mitrić, Petar | |
| dc.creator | Umićević, Ana | |
| dc.creator | Poudel, A. | |
| dc.creator | Sydoryk, Ihor | |
| dc.creator | Ren, Weijun | |
| dc.creator | Martin, Ruaridh M. | |
| dc.creator | Tanner, David B. | |
| dc.creator | Lazarević, Nenad | |
| dc.creator | Petrović, Čedomir | |
| dc.creator | Tanasković, Darko | |
| dc.date.accessioned | 2023-05-22T07:52:51Z | |
| dc.date.available | 2023-05-22T07:52:51Z | |
| dc.date.issued | 2023 | |
| dc.identifier.issn | 2469-9950 | |
| dc.identifier.uri | https://vinar.vin.bg.ac.rs/handle/123456789/10987 | |
| dc.description.abstract | Intermetallic narrow-gap semiconductors have been intensively explored due to their large thermoelectric power at low temperatures and a possible role of strong electronic correlations in their unusual thermodynamic and transport properties. Here we study the optical spectra and vibrational properties of FeGa3 single crystal. The optical conductivity indicates that FeGa3 has a direct band gap of ≈0.7 eV, consistent with density functional theory (DFT) calculations. Most importantly, we find a substantial spectral weight also below 0.4 eV, which is the energy of the indirect (charge) gap found in resistivity measurements and ab initio calculations. We find that the spectral weight below the gap decreases with increasing temperature, which indicates that it originates from the impurity states and not from the electronic correlations. Interestingly, we did not find any signatures of the impurity states in vibrational spectra. The infrared and Raman vibrational lines are narrow and weakly temperature dependent. The vibrational frequencies are in excellent agreement with our DFT calculations, implying a modest role of electronic correlations. Narrow Mössbauer spectral lines also indicate high crystallinity of the sample. © 2023 American Physical Society. | en |
| dc.language | English | |
| dc.relation | National Natural Science Foundation of China [Grants No. 51671192 and No. 51531008] | |
| dc.relation | e Ministry of Science, Technological Development, and Innovation of the Republic of Serbia | |
| dc.relation | Vinca Institute of Nuclear Sciences, through an agreement ˇ with the Ministry of Science, Technological Development, and Innovation of the Republic of Serbia | |
| dc.rights | restrictedAccess | |
| dc.source | Physical Review B | |
| dc.title | Optical conductivity and vibrational spectra of the narrow-gap semiconductor FeGa3 | en |
| dc.type | article | en |
| dc.rights.license | ARR | |
| dc.citation.volume | 107 | |
| dc.citation.issue | 16 | |
| dc.identifier.wos | 000982523200006 | |
| dc.identifier.doi | 10.1103/PhysRevB.107.165151 | |
| dc.citation.rank | M21 | |
| dc.type.version | publishedVersion | |
| dc.identifier.scopus | 2-s2.0-85158835378 |
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011 - Laboratorija za nuklearnu i plazma fiziku
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