Infrared Spectroscopy and DFT Calculations of Electronic and Lattice Vibrational Properties in FeGa<sub>3</sub>
ORAL
Abstract
The intermetallic Fe-based semiconductors FeSb2, FeSi and FeGa3 distinguish themselves because of reports of Seebeck coefficients in excess of 10,000 μV/K. However, there is not yet a clear consensus on the origin of such strong thermoelectric effect in these compounds and two main scenarios are invoked: the phonon-drag effect, due to a strong coupling of lattice vibrations to the mobile charges, and electron-electron correlations, manifested in the band structure, magnetic and electrical transport properties. Here we address some of these questions in FeGa3 by means of combined experimental measurements of infrared reflectance and Density Functional Theory (DFT) calculations. Optical band gap determined experimentally is confirmed by the theoretical values, and most noticeably, there is remarkable agreement between the observed phonon frequencies and the density functional perturbation theory (DFPT) calculations. We will discuss further the evolution of the spectral weight with temperature and the structure of the vibrational modes, as well as their potential implications on the large Seebeck coefficient in FeGa3.
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Presenters
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Catalin Martin
Ramapo College
Authors
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Catalin Martin
Ramapo College
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Vladimir Martinez
University of Florida, Gainesville, Florida 32611, USA
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Petar Mitric
Institute of Physics Belgrade, University of Belgrade, Pregrevica 118, 11080 Belgrade, Serbia
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Darko Tanaskovic
Institute of Physics Belgrade, University of Belgrade, Pregrevica 118, 11080 Belgrade, Serbia
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Rodica M Martin
Montclair State University
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Ihor Sydoryk
Ramapo College of NJ, Mahwah NJ, 07430
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David B Tanner
University of Florida
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Weijun Ren
Research Center of Topological Functional Materials and Henan Key Laboratory of Photovoltaic Materials, Henan University, Kaifeng 475004, China
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Cedomir Petrovic
Brookhaven National Laboratory