Electronic and optical properties of core-shell InAlN nanorods: a comparative study LDA, LDA-1/2, mBJ, HSE06, and BSE methods.

Phys Chem Chem Phys

Thin film Physics Division, Department of Physics, Chemistry and Biology (IFM), Linköping University, SE 581 83 Linköping, Sweden.

Published: February 2024

AI Article Synopsis

  • Self-induced InAlN core-shell nanorods have extensive experimental data and understanding of their growth and formation mechanisms, but their electronic and optical properties are not thoroughly explored.
  • The Bethe-Salpeter equation (BSE) is a leading method for studying these properties, but it's computationally expensive compared to density-functional theory (DFT).
  • This paper evaluates the effectiveness of several DFT approaches (LDA, LDA-1/2, mBJ, and HSE06) in accurately calculating the electronic and optical properties of smaller models of InAlN nanorods, offering a less resource-intensive alternative to BSE methods.

Article Abstract

Currently, self-induced InAlN core-shell nanorods enjoy an advanced stage of accumulation of experimental data from their growth and characterization as well as a comprehensive understanding of their formation mechanism by the modeling based on Synthetic Growth Concept. However, their electronic and optical properties, on which most of their foreseen applications are expected to depend, have not been investigated comprehensively. and the Bethe-Salpeter equation (BSE) are regarded as the state-of-the-art methodologies to study these properties. However, one of the major drawbacks of these methods is the computational cost, much higher than density-functional theory (DFT). Therefore, in many applications, it is highly desirable to answer the question of how well approaches based on DFT, such as the local density approximation (LDA), LDA-1/2, the modified Becke-Johnson (mBJ) and the Heyd-Scuseria-Ernzerhof (HSE06) functionals, can be employed to calculate electronic and optical properties with reasonable accuracy. In the present paper, we address this question, investigating how effective the DFT-based methodologies LDA, LDA-1/2, mBJ and HSE06 can be used as approximate tools in studies of the electronic and optical properties of scaled down models of core-shell InAlN nanorods, thus, avoiding and BSE calculations.

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http://dx.doi.org/10.1039/d3cp05295hDOI Listing

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