Temperature-dependent dielectric function of bulk SrTiO$_3$: Urbach tail, band edges, and excitonic effects
Physical Review B 93, 075204 (2016) We report the temperature-dependent complex dielectric function of pristine bulk SrTiO$_3$ between 4.2 and 300 K within the energy range of 0.6-6.5 eV determined by spectroscopic ellipsometry. Fundamental indirect and direct band-gap energies have been extracted a...
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Main Authors | , |
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Format | Journal Article |
Language | English |
Published |
27.02.2016
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Subjects | |
Online Access | Get full text |
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Summary: | Physical Review B 93, 075204 (2016) We report the temperature-dependent complex dielectric function of pristine
bulk SrTiO$_3$ between 4.2 and 300 K within the energy range of 0.6-6.5 eV
determined by spectroscopic ellipsometry. Fundamental indirect and direct
band-gap energies have been extracted and are discussed with regard to existing
state-of-the-art theoretical calculations. Furthermore, the dielectric function
around the fundamental direct gap is analyzed by considering excitonic states.
The excitonic effects, including the Coulomb enhancement of the continuum, are
characterized using an extension of the Elliott's formula considering both the
real and imaginary parts of the dielectric function. The Urbach tail below the
indirect edge shows an unconventional temperature-dependent behavior correlated
to the microstructural changes near the structural phase transition around 105
K from the low-temperature tetragonal phase to the cubic phase. The
temperature-dependent characterization reveals that the fundamental indirect
edge as well as the Urbach tail are affected conspicuously by the structural
phase transition while the fundamental direct edge is not. Moreover, the
indirect edge follows Varshni's rule only in the cubic phase and the direct
edge exhibits an anomalous linear increase with increasing temperature. |
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DOI: | 10.48550/arxiv.1602.08559 |