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Research PaperResearchia:202604.09042[Chemistry > Chemistry]

Self-consistent Hessian-level meta-generalized gradient approximation

Pooria Dabbaghi

Abstract

The ฯ‘\vartheta-MGGA class of density functionals is formally reformulated as Hessian-level meta-generalized gradient approximations (HL-MGGAs). In contrast to standard meta-GGAs that rely on the orbital-dependent kinetic-energy density or the density Laplacian, HL-MGGAs utilize the full density Hessian. We introduce a simplified, non-empirical functional, ฯ‘\vartheta-PBE, and present a roadmap for its self-consistent implementation within the projector augmented-wave (PAW) method. By utilizing the complete set of spatial second-order density derivatives, the functional's underlying descriptor successfully distinguishes between distinct one-electron density limits, such as single-center atomic densities and two-center bonds, that standard iso-orbital indicators often conflate. Benchmarks across molecular and solid-state datasets reveal that while ฯ‘\vartheta-PBE delivers accurate chemisorption energies and molecular properties, challenges remain in predicting bulk lattice constants. Ultimately, this work demonstrates the physical utility and feasibility of designing orbital-independent, Hessian-based exchange-correlation functionals.


Source: arXiv:2604.07046v1 - http://arxiv.org/abs/2604.07046v1 PDF: https://arxiv.org/pdf/2604.07046v1 Original Link: http://arxiv.org/abs/2604.07046v1

Submission:4/9/2026
Comments:0 comments
Subjects:Chemistry; Chemistry
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arXiv: This paper is hosted on arXiv, an open-access repository
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Self-consistent Hessian-level meta-generalized gradient approximation | Researchia