Unveiling the structural, chemical state, and optical band-gap evolution of Ta-doped epitaxial SrTiO3 thin films using first-principles calculations and spectroscopic ellipsometry
Shammi Kumar, Raja Sen, Mamta Arya, Sankar Dhar, and Priya Johari

TL;DR
This study combines first-principles calculations and spectroscopic ellipsometry to investigate how Ta doping affects the structural, chemical, electronic, and optical properties of SrTiO3 thin films, revealing an increase in band gap and improved electronic features.
Contribution
It provides a comprehensive analysis of Ta doping effects on SrTiO3 using both theoretical and experimental methods, offering new insights into tuning properties of perovskite oxides for TCO applications.
Findings
Band gap of SrTiO3 increases with Ta doping
Electronic properties are enhanced by Ta incorporation
Experimental and theoretical results are consistent
Abstract
In this report, the optical properties of Ta doped SrTiO3 (STO) due to its potential in transparent conducting oxides (TCOs) is explored by a combination of theoretical studies based on density functional theory and spectroscopic ellipsometry. To achieve this theoretically, we vary the concentration of Ta from 0 - 12.5% in SrTi1-xTaxO3 system by substitutional doping and report its effect on the resulting structural, chemical, electronic, chemical, and optical properties. Additionally, we perform band unfolding to shed light on the true nature of optical transitions due to Ta doping. We verify these results experimentally by fabricating epitaxial SrTi1-xTaxO3 thin films ( x = 0 - 5%) by pulsed laser deposition and obtain the optical dielectric properties of the system with the help of spectroscopic ellipsometry. By combining theoretical and experimental studies, we provide evidence that…
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Taxonomy
TopicsElectronic and Structural Properties of Oxides · Ferroelectric and Piezoelectric Materials · Semiconductor materials and devices
