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Physically motivated iso-orbital indicator for meta-GGA exchange functionals

Materials Science 2026-07-20 v1

Abstract

The iso-orbital indicator α=(ττvW)/τUEG\alpha = (\tau - \tau^\mathrm{vW})/\tau^\mathrm{UEG} is a key ingredient of meta-generalized gradient approximation (meta-GGA) functionals, but diverges in low-density tails , causing unphysical exchange potentials and systematic band gap errors as noted in [J. Chem. Phys. 150, 161101 (2019)]. We replace the denominator of α\alpha with a physically motivated Pauli KED drawn from the orbital-free DFT literature, eliminating the divergence in the low density atomic tail without any empirical regularization parameter. Testing two such enhancement factors: LKT and PGS, within the r2^2SCAN and MS2 exchange functionals, we find that the modified indicators suppress spurious oscillations in the semilocal exchange potential and restore correct electron localization in atomic tails. For a ten-member cubic semiconductor benchmark, the band gap mean absolute error is reduced by 41.1 % for r2^2SCAN@PGS and 48.8 % for MS2@PGS, while cohesive energy accuracy is largely preserved. The consistent improvement across two functionals with distinct constructions confirms a physical rather than functional specific origin, and motivates further development of meta-GGA functionals with constraint satisfying iso-orbital indicators.

Cite

@article{arxiv.2607.17736,
  title  = {Physically motivated iso-orbital indicator for meta-GGA exchange functionals},
  author = {Jeet Sharma and Abhishek Bhattacharjee and Bikash Patra and Prasanjit Samal},
  journal= {arXiv preprint arXiv:2607.17736},
  year   = {2026}
}

Comments

11 pages, 9 Figures