Regularity, Complexity, and Approximability of Electronic Wavefunctions
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Publication:5256572
DOI10.1007/978-3-319-08159-5_21zbMath1318.82029OpenAlexW2203383912MaRDI QIDQ5256572
Publication date: 18 June 2015
Published in: Extraction of Quantifiable Information from Complex Systems (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/978-3-319-08159-5_21
Interacting particle systems in time-dependent statistical mechanics (82C22) General topics in linear spectral theory for PDEs (35P05) Closed and approximate solutions to the Schrödinger, Dirac, Klein-Gordon and other equations of quantum mechanics (81Q05) Atomic physics (81V45) Molecular physics (81V55)
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Analysis of the Extended Coupled-Cluster Method in Quantum Chemistry ⋮ An Adaptive Multiscale Approach for Electronic Structure Methods
Cites Work
- Wavelet approximation in weighted Sobolev spaces of mixed order with applications to the electronic Schrödinger equation
- The mixed regularity of electronic wave functions in fractional order and weighted Sobolev spaces
- On the regularity of the electronic Schrödinger equation in Hilbert spaces of mixed derivatives
- Regularity and approximability of electronic wave functions
- Sharp regularity results for Coulombic many-electron wave functions
- The mixed regularity of electronic wave functions multiplied by explicit correlation factors
- Electron wavefunctions and densities for atoms
- The efficient computation of certain determinants arising in the treatment of Schrödinger's equations
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