The derivative discontinuity of the exchange-correlation functional
arXiv:1404.0902 · doi:10.1039/C4CP01170H
Abstract
The derivative discontinuity is a key concept in electronic structure theory in general and density functional theory in particular. The electronic energy of a quantum system exhibits derivative discontinuities with respect to different degrees of freedom that are a consequence of the integer nature of electrons. The classical understanding refers to the derivative discontinuity of the total energy as a function of the total number of electrons (), but it can also manifest at constant . Examples are shown in models including several Hydrogen systems with varying numbers of electrons or nuclear charge (), as well as the 1-dimensional Hubbard model (1DHM). Two sides of the problem are investigated: first, the failure of currently used approximate exchange-correlation functionals in DFT and, second, the importance of the derivative discontinuity in the exact electronic structure of molecules, as revealed by full configuration interaction (FCI). Currently, all approximate functionals miss the derivative discontinuity, leading to basic errors that can be seen in many ways: from the complete failure to give the total energy of H and H, to the missing gap in Mott insulators such as stretched H and the thermodynamic limit of the 1DHM, or a qualitatively incorrect density in the HZ molecule with two electrons and incorrect electron transfer processes. Description of the exact particle behavior of electrons is emphasized, which is key to many important physical processes in real systems, especially those involving electron transfer, and offers a challenge for the development of new exchange-correlation functionals.
References in corpus (8)
- Localization and delocalization errors in density functional theory and implications for band-gap prediction
- Fractional spins and static correlation error in density functional theory
- Koopmans' condition for density-functional theory
- The discontinuous nature of the exchange-correlation functional -- critical for strongly correlated systems
- Piecewise Linearity of Approximate Density Functionals Revisited: Implications for Frontier Orbital Energies
- Fundamental gaps with approximate density functionals: the derivative discontinuity revealed from ensemble considerations
- Restoration of the Derivative Discontinuity in Kohn-Sham Density Functional Theory: An Efficient Scheme for Energy Gap Correction
- Integer Discontinuity of Density Functional Theory
Cited by in corpus (29)
- The Hubbard Dimer: A density functional case study of a many-body problem
- First principles simulations of dense hydrogen
- Where Does the Density Localize? Convergent Behavior for Global Hybrids, Range Separation, and DFT+U
- How is the derivative discontinuity related to steps in the exact Kohn-Sham potential?
- Deviations from piecewise linearity in the solid-state limit with approximate density functionals
- Landscape of an exact energy functional
- Machine learning the derivative discontinuity of density-functional theory
- Artificial neural networks for density-functional optimizations in fermionic systems
- A DFT+U type functional derived to explicitly address the flat plane condition
- Nonlocal Machine-Learned Exchange Functional for Molecules and Solids
- Projected Hybrid Density Functionals: Method and Application to Core Electron Ionization
- Exact Maps in Density Functional Theory for Lattice Models
- Learning the energy curvature versus particle number in approximate density functionals
- Addressing the Band Gap Problem with a Machine-Learned Exchange Functional
- Qualitative breakdown of the unrestricted Hartree-Fock energy
- Molecular orbital projectors in non-empirical jmDFT recover exact conditions in transition metal chemistry
- Exact exchange-correlation potentials for calculating the fundamental gap with a fixed number of electrons
- Fractional charge by fixed-node diffusion Monte Carlo
- Dopant levels in large nanocrystals using stochastic optimally tuned range-separated hybrid density functional theory
- The tilted-plane structure of the energy of finite quantum systems
- Density functional theory for fractional charge: Locality, size consistency, and exchange-correlation
- Accurate real-time evolution of electron densities and ground-state properties from generalized Kohn-Sham theory
- Comparison of local density functionals based on electron gas and finite systems
- Flat-plane based double-counting free and parameter free many-body DFT+U
- High-fidelity electronic structure and properties of InSb: and Bayesian-optimized hybrid functionals and DFT+ approaches
- Exact expressions for the height of the interatomic step in the exchange-correlation potential from the derivative discontinuity of the energy
- Evaluating the local bandgap across InxGa1-xAs multiple quantum wells in a metamorphic laser via low-loss EELS
- Chemical potential, derivative discontinuity, fractional electrons, jump of the Kohn-Sham potential, atoms as thermodynamic open systems, and other (mis)conceptions of the density functional theory of electrons in molecules
- Repulsively diverging gradient of the density functional in the Reduced Density Matrix Functional Theory