Search results for "atomic physics"

showing 10 items of 5530 documents

Ab initio modeling of copper adhesion on regular BaTiO3(001) surfaces

2005

Ab initio calculations have been performed for copper adsorption on a regular, defect-free TiO"2- and BaO-terminated (001) surfaces of a cubic BaTiO"3, using a posteriori HF-CC method as implemented into the CRYSTAL-03 computer code. To clarify the nature of the interfacial bonding, we use slab models of the Cu/BaTiO"3(001) interfaces with different one-side substrate coverages, varied from 1/8 monolayer (ML) up to 1/2 ML, over both TiO"2- and BaO-terminated surfaces. TiO"2 termination has been found to be energetically more favorable for the adsorption of copper atoms. In agreement with previous experimental and theoretical data, our calculations indicate essential contribution of atomic p…

ChemistryBinding energyAb initiochemistry.chemical_elementSubstrate (electronics)Electronic structureCondensed Matter PhysicsCopperAtomic and Molecular Physics and OpticsSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsAdsorptionAb initio quantum chemistry methodsChemical physicsMonolayerElectrical and Electronic EngineeringAtomic physicsMicroelectronic Engineering
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Ab initio modelling of Y-O cluster formation in γ-Fe lattice

2016

Ab initio modelling of Y and O impurity atoms as well as VFe vacancies in the fcc-Fe lattice is performed in order to calculate the interactions between these defects, which are important for understanding of nanoparticles’ formation within the oxide dispersed strengthened steels. Large scale parallel calculations based on plane-wave method realised in VASP computer code show that VFe vacancies considerably influence the binding between the impurity atoms. In this study, we present the results of performed calculations providing the detailed information about the binding energies between the defects, the changes of their effective charges as well as displacements of the substitute atoms rel…

ChemistryBinding energyOxideAb initioNanoparticle02 engineering and technology021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesMolecular physicsElectronic Optical and Magnetic Materialschemistry.chemical_compoundImpurityLattice (order)0103 physical sciencesAtomPhysics::Atomic and Molecular ClustersAtomic physics010306 general physics0210 nano-technologyphysica status solidi (b)
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Theoretical study of the derivative hydrocarbons of biphenylene. I. Electronic spectrum of the biphenylene

1969

The electronic spectrum of biphenylene has been studied theoretically. The investigation is based on the semi-empirical LCAO SCF MO method with various degrees of approximations. The results have been analysed with regard to the following two factors: (a) The difference in effective electronegativity between the carbon atoms in the four-membered ring and the other carbon atoms in the molecule. (b) The inclusion of doubly excited configurations in the description of the π-electronic molecular states. The theory satisfactorily interprets the excitation energies and the nature of the electronic transitions. The predictions are particularly affected by the inclusion of the doubly excited config…

ChemistryBiphenyleneCondensed Matter PhysicsRing (chemistry)Atomic and Molecular Physics and OpticsElectronegativitychemistry.chemical_compoundLinear combination of atomic orbitalsAtomic electron transitionExcited stateMoleculePhysical and Theoretical ChemistryAtomic physicsExcitationInternational Journal of Quantum Chemistry
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High resolution spectroscopy and potential determination of the (3)1Pi state of NaCs.

2006

The (3)(1)Pi state of the NaCs molecule was studied by high resolution Fourier-transform spectroscopy. The (3)(1)Pi--X (1)Sigma(+) laser induced fluorescence was excited by an Ar(+) ion laser or by a single-mode frequency-doubled cw Nd:YAG laser. The presence of argon buffer gas yielded rich rotational relaxation spectra allowing to enlarge the data set for the (3)(1)Pi state term values, as well as to observe Lambda splittings in a wide range of vibrational (v(')) and rotational (J(')) quantum numbers. The data field includes about 820 energy levels of (3)(1)Pi NaCs in the range from v(')=0 to 37 and from J(')=3 to 190, which corresponds to ca. 95% of the potential well depth. Direct fit o…

ChemistryBuffer gasGeneral Physics and AstronomyIon laserQuantum numberLaserPotential energylaw.inventionlawExcited statePhysical and Theoretical ChemistryAtomic physicsLaser-induced fluorescenceSpectroscopyThe Journal of chemical physics
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LDA electronic structure calculations on Au13 cluster

1997

ChemistryCluster (physics)Electronic structurePhysical and Theoretical ChemistryAtomic physicsCondensed Matter PhysicsMolecular physicsAtomic and Molecular Physics and OpticsInternational Journal of Quantum Chemistry
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Analytic calculation of the diagonal Born-Oppenheimer correction within configuration-interaction and coupled-cluster theory

2006

Schemes for the analytic calculation of the diagonal Born-Oppenheimer correction (DBOC) are formulated and implemented for use with general single-reference configuration-interaction and coupled-cluster wave function models. Calculations are reported to demonstrate the convergence of the DBOC with respect to electron-correlation treatment and basis set as well as to investigate the size-consistency error in configuration-interaction calculations of the DBOC. The importance of electron-correlation contributions to the DBOC is illustrated in the computation of the corresponding corrections for the reaction energy and activation barrier of the F + H2 --FH + H reaction as well as of the atomiza…

ChemistryComputationDiagonalBorn–Oppenheimer approximationGeneral Physics and AstronomyConfiguration interactionsymbols.namesakeCoupled clusterQuantum electrodynamicsConvergence (routing)symbolsPhysical and Theoretical ChemistryAtomic physicsWave functionBasis setThe Journal of Chemical Physics
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Analytic first derivatives for a spin-adapted open-shell coupled cluster theory: Evaluation of first-order electrical properties

2014

An analytic scheme is presented for the evaluation of first derivatives of the energy for a unitary group based spin-adapted coupled cluster (CC) theory, namely, the combinatoric open-shell CC (COSCC) approach within the singles and doubles approximation. The widely used Lagrange multiplier approach is employed for the derivation of an analytical expression for the first derivative of the energy, which in combination with the well-established density-matrix formulation, is used for the computation of first-order electrical properties. Derivations of the spin-adapted lambda equations for determining the Lagrange multipliers and the expressions for the spin-free effective density matrices for…

ChemistryComputationGeneral Physics and AstronomyLambdaDipolesymbols.namesakeCoupled clusterAtomic orbitalQuantum mechanicsUnitary groupLagrange multipliersymbolsPhysical and Theoretical ChemistryAtomic physicsOpen shellThe Journal of Chemical Physics
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A MRCI PS and CASSCF study of the ground state MgO dissociation energy

1991

Abstract Ab initio calculations at CASSCF and MRCI PS levels are used to determine the dissociation energy for the X 1 Σ + state of MgO, which adiabatically dissociates to the ground state 1 S g of magnesium and to the excited 1 D g state of oxygen, as well as other spectroscopic parameters. Emphasis is placed upon the problem of properly selecting an adequate active space in CASSCF calculations and upon the improvements obtained in MRCI by selecting perturbatively the most important contributions to the total wavefunction and evaluating the remaining ones only by perturbational method. Through a procedure based on stabilizing the computed dissociation energy, values of 3.87 eV (MRCI PS) an…

ChemistryComputational chemistryAb initio quantum chemistry methodsExcited stateAnharmonicityGeneral Physics and AstronomyRotational spectroscopyPhysical and Theoretical ChemistryAtomic physicsWave functionGround stateDiatomic moleculeBond-dissociation energyChemical Physics Letters
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A mutliconfigurational study of low-lying electronic states of KO

1992

Abstract Potential energy curves and spectroscopic parameters of several electronic states of the KO molecule have been calculated using multi-configurational methods. The KO B 2Π state, first time theoretically described, presents a strong avoided crossing with the A 2Π state, and allows for the explanation of the observed fluorescence of the KO molecule. Eleven electronic states have been studied at all the internuclear distances. Effects of complete active space and basis set selections on the results are also analyzed.

ChemistryComputational chemistryAvoided crossingGeneral Physics and AstronomyComplete active spacePhysical and Theoretical ChemistryConfiguration interactionAtomic physicsPotential energyDiatomic moleculeBasis setMolecular electronic transitionDoublet stateChemical Physics
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CASSCF/CASPT2 analysis of the fragmentation of H2 on a Pd4 cluster

2009

Two reactive pathways are described for the dissociative adsorption of a hydrogen molecule on a Pd4 pyramidal cluster, by using DFT/B3LYP and CASSCF/CASPT2 computational methods. Because of the different spin multiplicities of the cluster in the initial and final states, the reaction proceeds through a spin multiplicity change, which occurs close to the transition states. The activation energy values are very similar when the DFT method is used, whereas the CASPT2 calculations predict that the concerted mechanism is disfavored. © 2009 Wiley Periodicals, Inc. Int J Quantum Chem, 2010

ChemistryConcerted reactionHydrogen moleculeActivation energyCondensed Matter PhysicsDissociative adsorptionMolecular physicsAtomic and Molecular Physics and OpticsTransition stateIntersystem crossingFragmentation (mass spectrometry)Physical and Theoretical ChemistryAtomic physicsQuantumInternational Journal of Quantum Chemistry
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