Photoionization cross section by Stieltjes imaging applied to coupled cluster Lanczos pseudo-spectra.
暂无分享,去创建一个
Sonia Coriani | Ove Christiansen | Patrick Norman | Janusz Cukras | Piero Decleva | O. Christiansen | P. Decleva | S. Coriani | P. Norman | Janusz Cukras
[1] C. E. Brion,et al. The electronic spectrum of water in the discrete and continuum regions. Absolute optical oscillator strengths for photoabsorption (6–200 eV) , 1993 .
[2] G. Diercksen. Molecular Photoionisation Cross Sections by Moment Theory. an Introduction , 2007 .
[3] Christof Hättig,et al. Implementation of RI-CC2 triplet excitation energies with an application to trans-azobenzene , 2002 .
[4] O. Christiansen,et al. A band Lanczos approach for calculation of vibrational coupled cluster response functions: simultaneous calculation of IR and Raman anharmonic spectra for the complex of pyridine and a silver cation. , 2013, Physical chemistry chemical physics : PCCP.
[5] L. Cederbaum,et al. Ab initio calculation of interatomic decay rates by a combination of the Fano ansatz, Green's-function methods, and the Stieltjes imaging technique. , 2005, The Journal of chemical physics.
[6] J. Samson,et al. Total photoabsorption cross sections of H 2 from 18 to 113 eV , 1994 .
[7] Thomas Fransson,et al. Asymmetric-Lanczos-Chain-Driven Implementation of Electronic Resonance Convergent Coupled-Cluster Linear Response Theory. , 2012, Journal of chemical theory and computation.
[8] O. Christiansen,et al. Coupled-cluster response theory for near-edge x-ray-absorption fine structure of atoms and molecules , 2012 .
[9] Ove Christiansen,et al. Cauchy moments and dispersion coefficients using coupled cluster linear response theory , 1997 .
[10] L. Cederbaum,et al. Molecular photoionization cross sections by Stieltjes-Chebyshev moment theory applied to Lanczos pseudospectra. , 2009, The Journal of chemical physics.
[11] P. W. Langhoff,et al. Photoabsorption in carbon monoxide: Stieltjes–Tchebycheff calculations in the separated‐channel static‐exchange approximation , 1978 .
[12] P. W. Langhoff,et al. Stieltjes imaging of photoabsorption and dispersion profiles , 1974 .
[13] Trygve Helgaker,et al. Molecular Electronic-Structure Theory: Helgaker/Molecular Electronic-Structure Theory , 2000 .
[14] Trygve Helgaker,et al. Recent advances in wave function-based methods of molecular-property calculations. , 2012, Chemical reviews.
[15] James S. Sims,et al. Moment-theory investigations of photoabsorption and dispersion profiles in atoms and ions , 1976 .
[16] P. W. Langhoff,et al. Theoretical studies of photoexcitation and ionization in H2O , 1982 .
[17] Boris M. Smirnov,et al. Physics of Ionized Gases , 2001 .
[18] Jack Dongarra,et al. Templates for the Solution of Algebraic Eigenvalue Problems , 2000, Software, environments, tools.
[19] C. E. Brion,et al. The electronic spectrum of carbon dioxide. Discrete and continuum photoabsorption oscillator strengths (6–203 eV) , 1993 .
[20] C. E. Brion,et al. Absolute oscillator strengths for the photoabsorption and partial photoionisation of hydrogen fluoride , 1981 .
[21] Christof Hättig,et al. CC2 excitation energy calculations on large molecules using the resolution of the identity approximation , 2000 .
[22] L. Poletto,et al. Vacuum-ultraviolet photoabsorption imaging system for laser plasma plume diagnostics , 2003 .
[23] L. Cederbaum,et al. Ab initio interatomic decay widths of excited states by applying Stieltjes imaging to Lanczos pseudospectra. , 2011, The Journal of chemical physics.
[24] P. W. Langhoff. Stieltjes imaging of atomic and molecular photoabsorption profiles , 1973 .
[25] Robert H. Halstead,et al. Matrix Computations , 2011, Encyclopedia of Parallel Computing.
[26] James A. R. Samson,et al. Precision measurements of the total photoionization cross-sections of He, Ne, Ar, Kr, and Xe , 2002 .
[27] C. E. Brion,et al. The electronic absorption spectrum of NH3 in the valence shell discrete and continuum regions. Absolute oscillator strengths for photoabsorption (5–200 eV) , 1993 .
[28] Poul Jørgensen,et al. The second-order approximate coupled cluster singles and doubles model CC2 , 1995 .
[29] J. Samson,et al. Total absorption and photoionization cross sections of water vapor between 100 and 1000 Å , 1986 .
[30] L. Cederbaum,et al. Autoionization widths by Stieltjes imaging applied to Lanczos pseudospectra. , 2011, The Journal of chemical physics.
[31] R. Nesbet. Stieltjes imaging method for computation of oscillator-strength distributions for complex atoms , 1976 .
[32] C. E. Brion,et al. Absolute optical oscillator strengths for discrete and continuum photoabsorption of carbon monoxide (7–200 eV) and transition moments for the X 1Σ+ → A 1Π system , 1993 .
[33] J. Olsen,et al. Molecular electronic-structure theory , 2000 .
[34] Poul Jørgensen,et al. Response functions from Fourier component variational perturbation theory applied to a time-averaged quasienergy , 1998 .
[35] M. Stener,et al. Molecular photoionization cross sections by the local density LCAO Stieltjes imaging approach , 1995 .
[36] P. Brimblecombe,et al. Chemistry of Atmospheres. , 1986 .
[37] J. Berkowitz. Atomic and Molecular Photoabsorption: Absolute Total Cross Sections , 2001 .
[38] M. Jungen,et al. Universal Gaussian basis sets for an optimum representation of Rydberg and continuum wavefunctions , 1989 .