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◆ Physics Open2026-05-01· Materials science

Beyond standard DFT: Accurate electronic and NLO characterization of ZnSe and GaN for QPM device design using HSE06 hybrid functional

DAHAME Tahar, YOUSFI Aissa, E.L.HAMRA Fatima, Fadla Mohamed Abdelilah, DJERADI Sabrina, BENDELALA Fathi, SARHANI Mohammed ElSaid

原始摘要(英文原文)· Original abstract
Designing efficient optoelectronic devices requires a precise understanding of the bandgap, a parameter often poorly predicted by standard DFT. In this study, we tackle this "bandgap problem" for cubic and (space group ) by employing the hybrid HSE06 functional. Our calculations, performed with high energy cut-offs of and , yielded accurate bandgap values of for and for . These hybrid results represent a significant correction over traditional / underestimations. To ensure a consistent description of response properties, the BLYP functional was utilized to calculate the second-order nonlinear coefficients and the elastic constants ). The obtained values ( for and for ), combined with our refined HSE06 electronic structures, allowed for a precise theoretical determination of coherence length ( ) and the calculated Quasi-Phase Matching (QPM) periods for harmonic generation. Our findings demonstrate that using hybrid functionals provides a robust and physically sound basis for evaluating the potential performance of frequency-conversion devices based on wide-bandgap semiconductors, offering high-precision parameters for future experimental development.
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Beyond standard DFT: Accurate electronic and NLO characterization of ZnSe and GaN for QPM device design using HSE06 hybrid functional — 科研速览 Science Skim