Bayesian Optimization of Hubbard U’s for Investigating InGaN Superlattices

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Abstract

In this study, we undertake a Bayesian optimization of the Hubbard U parameters of wurtzite GaN and InN. The optimized Us are then tested within the Hubbard-corrected local density approximation (LDA+U) approach against standard density functional theory, as well as a hybrid functional (HSE06). We present the electronic band structures of wurtzite GaN, InN, and (1:1) InGaN superlattice. In addition, we demonstrate the outstanding performance of the new parametrization, when computing the internal electric-fields in a series of [InN] (Formula presented.) –[GaN] (Formula presented.) superlattices (n = 2–5) stacked up along the c-axis.

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Popov, M. N., Spitaler, J., Romaner, L., Bedoya-Martínez, N., & Hammer, R. (2021). Bayesian Optimization of Hubbard U’s for Investigating InGaN Superlattices. Electronic Materials, 2(3), 370–381. https://doi.org/10.3390/electronicmat2030025

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