Progress in Time-Dependent Density-Functional Theory
arXiv:1108.0611 · doi:10.1146/annurev-physchem-032511-143803
Abstract
The classic density-functional theory (DFT) formalism introduced by Hohenberg, Kohn, and Sham in the mid-1960s, is based upon the idea that the complicated N-electron wavefunction can be replaced with the mathematically simpler 1-electron charge density in electronic struc- ture calculations of the ground stationary state. As such, ordinary DFT is neither able to treat time-dependent (TD) problems nor describe excited electronic states. In 1984, Runge and Gross proved a theorem making TD-DFT formally exact. Information about electronic excited states may be obtained from this theory through the linear response (LR) theory formalism. Begin- ning in the mid-1990s, LR-TD-DFT became increasingly popular for calculating absorption and other spectra of medium- and large-sized molecules. Its ease of use and relatively good accuracy has now brought LR-TD-DFT to the forefront for this type of application. As the number and the diversity of applications of TD-DFT has grown, so too has grown our understanding of the strengths and weaknesses of the approximate functionals commonly used for TD-DFT. The objective of this article is to continue where a previous review of TD-DFT in this series [Annu. Rev. Phys. Chem. 55: 427 (2004)] left off and highlight some of the problems and solutions from the point of view of applied physical chemistry. Since doubly-excited states have a particularly important role to play in bond dissociation and formation in both thermal and photochemistry, particular emphasis will be placed upon the problem of going beyond or around the TD-DFT adiabatic approximation which limits TD-DFT calculations to nominally singly-excited states. Posted with permission from the Annual Review of Physical Chemistry, Volume 63 \c{opyright} 2012 by Annual Reviews, http://www.annualreviews.org.
References in corpus (6)
- On the "Causality Paradox" of Time-Dependent Density Functional Theory
- Conserving Approximations in Time-Dependent Density Functional Theory
- Real-time electron dynamics with exact-exchange time-dependent density-functional theory
- Non-adiabatic electron dynamics in time-dependent density-functional theory
- Time-dependent density-functional and reduced density-matrix methods for few electrons: Exact versus adiabatic approximations
- Adapting approximate memory potentials for time-dependent density functional theory
Cited by in corpus (117)
- Combining Machine Learning and Computational Chemistry for Predictive Insights Into Chemical Systems
- Machine learning for electronically excited states of molecules
- A Mountaineering Strategy to Excited States: Highly-Accurate Reference Energies and Benchmarks
- Classical dynamical density functional theory: from fundamentals to applications
- Microscopic theory of singlet exciton fission. I. General formulation
- The 2021 Quantum Materials Roadmap
- QUESTDB: a database of highly-accurate excitation energies for the electronic structure community
- Quantitative wave function analysis for excited states of transition metal complexes
- A brief compendium of time-dependent density-functional theory
- Nonadiabatic Dynamics in Open Quantum-Classical Systems: Forward-Backward Trajectory Solution
- An assessment of the low-lying excitation energies and triplet instabilities of organic molecules with an ab initio Bethe-Salpeter equation approach
- Equation-of-Motion Coupled-Cluster Theory based on the 4-component Dirac-Coulomb(-Gaunt) Hamiltonian. Energies for single electron detachment, attachment and electronically excited states
- Assessing the Performances of CASPT2 and NEVPT2 for Vertical Excitation Energies
- Quantum-Electrodynamical Time-Dependent Density Functional Theory. I. A Gaussian Atomic Basis Implementation
- A state-averaged orbital-optimized hybrid quantum-classical algorithm for a democratic description of ground and excited states
- Tight-Binding Approximations to Time-Dependent Density Functional Theory - a fast approach for the calculation of electronically excited states
- Exact ensemble density functional theory for excited states in a model system: investigating the weight dependence of the correlation energy
- Accurate optical spectra through time-dependent density functional theory based on screening-dependent hybrid functionals
- Linear-scaling time-dependent density-functional theory in the linear response formalism
- Individual correlations in ensemble density-functional theory: State-driven/density-driven decompositions without additional Kohn-Sham systems
- Efficient Calculation of Electronic Absorption Spectra by Means of Intensity-Selected TD-DFTB
- The quest to simulate excited-state dynamics of transition metal complexes
- Assessing Excited State Energy Gaps with Time-Dependent Density Functional Theory on Ru(II) Complexes
- Density-driven correlations in many-electron ensembles: theory and application for excited states
- Real-time exciton dynamics with time-dependent density-functional theory
- Density Functional Theory for Electronic Excited States
- Ground and excited energy levels can be extracted exactly from a single ensemble density-functional theory calculation
- Generalized adiabatic connection in ensemble density-functional theory for excited states: example of the H2 molecule
- On the Subsystem Formulation of Linear-Response Time-Dependent DFT
- Time-dependent density functional theory on a lattice
- Ensemble Density Functional Theory of Neutral and Charged Excitations
- Understanding real-time time-dependent density-functional theory simulations of ultrafast laser-induced dynamics in organic molecules
- A weight-dependent local correlation density-functional approximation for ensembles
- Electron-Affinity Time-Dependent Density Functional Theory: Formalism and Applications to Core-Excited States
- Linear response time-dependent density functional theory of the Hubbard dimer
- A Density Functional Extension to Excited State Mean-Field Theory
- Linear interpolation method in ensemble Kohn-Sham and range-separated density-functional approximations for excited states
- Measuring Electron Correlation. The Impact of Symmetry and Orbital Transformations
- Moiré Fractional Chern Insulators III: Hartree-Fock Phase Diagram, Magic Angle Regime for Chern Insulator States, the Role of the Moiré Potential and Goldstone Gaps in Rhombohedral Graphene Superlattices
- Time-dependent density-functional theory for real-time electronic dynamics on material surfaces
- Excited electronic states from a variational approach based on symmetry-projected Hartree--Fock configurations
- Weight Dependence of Local Exchange-Correlation Functionals in Ensemble Density-Functional Theory: Double Excitations in Two-Electron Systems
- Random-phase approximation excitation energies from approximate equation-of-motion ring coupled-cluster doubles
- Machine Learning Exchange-Correlation Potential in Time Dependent Density Functional Theory
- Ab-initio wave-length dependent Raman spectra: Placzek approximation and beyond
- A Finite-field Approach for Calculations Beyond the Random Phase Approximation
- Boosting photocatalytic water splitting of polymeric C by reduced dimensionality from 2D monolayer to 1D chain
- Electronic excitations from a linear-response range-separated hybrid scheme
- State-Specific Coupled-Cluster Methods for Excited States
- Exact Excited-State Functionals of the Asymmetric Hubbard Dimer
- Davydov-Type Excitonic Effects on the Absorption Spectra of Parallel-Stacked and Herringbone Aggregates of Pentacene: Time-Dependent Density-Functional Theory and Time-Dependent Density-Functional Tight Binding
- Efficient analytic second derivative of electrostatic embedding QM/MM energy: normal mode analysis of plant cryptochrome
- XDFT: an efficient first-principles method for neutral excitations in molecules
- Excited state diabatization on the cheap using DFT: Photoinduced electron and hole transfer
- Multireference Density Functional Theory for Describing Ground and Excited States with Renormalized Singles
- Exploration of H2 binding to the [NiFe]-hydrogenase active site with multiconfigurational density functional theory
- Ghost interaction correction in ensemble density-functional theory for excited states with and without range separation
- Exploring organic semiconductors in solution: The effects of solvation, alkylization, and doping
- Tunable photostriction of halide perovskites through energy dependent photoexcitation
- Importance of local exact exchange potential in hybrid functionals for accurate excited states
- Combining linear interpolation with extrapolation methods in range-separated ensemble density-functional theory
- Wavelet-Based Linear-Response Time-Dependent Density-Functional Theory
- Neutral electronic excitations and derivative discontinuities: An extended -centered ensemble density functional theory perspective
- A Snapshot of Time-Dependent Density-Functional Theory
- An Excited-State-Specific Pseudoprojected Coupled-Cluster Theory
- Proton-transfer induced fluorescence in self assembled short peptides
- Macroscopic Quantum Electrodynamics and Density Functional Theory Approaches to Dispersion Interactions between Fullerenes
- Ensemble density functional theory of ground and excited energy levels
- Quantum fluctuations induce collective multiphonons in finite Fermi liquids
- Laser-Induced Electronic and Vibronic Dynamics in the Pyrene Molecule and its Cation
- Melting a Hubbard dimer: benchmarks of `ALDA' for quantum thermodynamics
- The Exact Exchange-Correlation Potential in Time-Dependent Density Functional Theory: Choreographing Electrons with Steps and Peaks
- Excitation Energies from Thermally-Assisted-Occupation Density Functional Theory: Theory and Computational Implementation
- Long-range Corrected Fragment Molecular Orbital Density-Functional Tight-binding Method for Excited States in Large Molecular Systems
- Effect of Varying the TD-lc-DFTB Range-Separation Parameter on Charge and Energy Transfer in a Model Pentacene/Buckminsterfullerene Heterojunction
- Partial Density of States Ligand Field Theory (PDOS-LFT): Recovering a LFT-Like Picture and Application to Photoproperties of Ruthenium(II) Polypyridine Complexes
- Accurate and efficient computation of optical absorption spectra of molecular crystals: the case of the polymorphs of ROY
- Absence of Dynamical Steps in the Exact Correlation Potential in Linear Response
- Extended -centered ensemble density functional theory of double electronic excitations
- A new framework for frequency-dependent polarizable force fields
- Calculation of core-excited and core-ionized states using variational quantum deflation method and applications to photocatalyst modelling
- Machine-learning Kohn-Sham potential from dynamics in time-dependent Kohn-Sham systems
- Aufbau Suppressed Coupled Cluster Theory for Electronically Excited States
- Insights From Exact Exchange-Correlation Kernels
- Applications of the dynamical generator coordinate method to quadrupole excitations
- Semi-empirical many-body formalism of optical absorption in nanosystems and molecules
- Invertibility of retarded response functions for Laplace transformable potentials: application to one-body reduced density matrix functional theory
- Density functional theory beyond the Born-Oppenheimer approximation: Exact mapping onto an electronically non-interacting Kohn-Sham molecule
- First-principles analysis of the optical properties of lead halide perovskite solution precursors
- Multiconfigurational time-dependent density functional theory for atomic nuclei: Technical and numerical aspects
- Excitation energies from G{ö}rling-Levy perturbation theory along the range-separated adiabatic connection
- Stochastic Real-Time Second-Order Green's Function Theory for Neutral Excitations in Molecules and Nanostructures
- Diagrammatic Multiplet-Sum Method (MSM) Density-Functional Theory (DFT): Investigation of the Transferability of Integrals in "Simple" DFT-Based Approaches to Multi-Determinantal Problems
- Shifting sands of hardware and software in exascale quantum mechanical simulations
- Charge transfer excitations with range separated functionals using improved virtual orbitals
- Exact static linear response of excited states from ensemble density functional theory
- Rank-reduced equation-of-motion coupled cluster triples: an accurate and affordable way of calculating electronic excitation energies
- Explicit core-hole single-particle methods for L- and M- edge X-ray absorption and electron energy-loss spectra
- The particle-hole map: a computational tool to visualize electronic excitations
- Copula approach to exchange-correlation hole in many-electron systems with strong correlations
- Floquet formulation of the dynamical Berry-phase approach to non-linear optics in extended systems
- Revisiting the performance of time-dependent density functional theory for electronic excitations: Assessment of 43 popular and recently developed functionals from rungs one to four
- Excited-State Response Theory Within the Context of the Coupled-Cluster Formalism
- Density Functional Tight-Binding Enables Tractable Studies of Quantum Plasmonics
- Fast calculation of retarded potentials in multi-domain TDDFT
- Nonadiabatic time-dependent density-functional theory at the cost of adiabatic local density approximation
- Exactly factorized molecular Kohn-Sham density functional theory
- Performance of range-separated long-range SOPPA short-range density functional theory method for vertical excitation energies
- Diagrammatic Multiplet-Sum Method (MSM) Density-Functional Theory (DFT): II. Completion of the Two-Orbital Two-Electron Model (TOTEM) with an Application to the Avoided Crossing in Lithium Hydride (LiH)
- Ensemble density functional theory of excited states: Exact N-centered formalism and practical opportunities
- Rank-reduced equation-of-motion coupled cluster formalism with full inclusion of triple excitations
- Implementation of time-dependent Hartree-Fock in real space
- Assessment of the Performance of DFT Functionals Using Off-Diagonal Hypervirial Relationships
- Valence and core excitons in solids from velocity-gauge real-time TDDFT with range-separated hybrid functionals: An LCAO approach
- Investigation of dense manifold of particle-hole excitations in metallic nanowires using r12-correlated frequency-dependent electron-hole interaction kernel
- One-Body Properties and Their Perturbative Accuracy with Aufbau Suppressed Coupled Cluster Theory
- Practical Treatment of Singlet Oxygen with Density-Functional Theory and the Multiplet-Sum Method