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Ionization probability of the hydrogen atom suddenly released from confinement
(Wiley, 2017)
The problem of the stability of a confined atom when it is extracted from the confining cavity has been investigated, modeled by a spherical hard wall potential. The ionization probability when the atom is released from ...
Ionization and excitation probabilities of a hydrogen atom suddenly released from penetrable confinement
(Taylor & Francis, 2018)
The problem of the stability of the hydrogen atom when it is released from a confining environment is studied. The stability is analysed in terms of excitation and ionization probabilities of the final state for different ...
A simple and accurate analytical model of the Stark profile and its application to plasma characterization
(Elsevier, 2018)
Optical Emission Spectroscopy techniques are among the most employed to perform the characterization of laboratory plasmas. The analysis of the obtained data is based on the convolution of three different types of profiles: ...
Exclusion Principle Repulsion Effects on the Covalent Bond Beyond the Born-Oppenheimer Approximation
(Royal Society of Chemistry, 2019)
The changes in the covalent bond of the hydrogen molecule limited in the space by a spherical hard boundary are studied. The sphere is moved along an axis parallel or orthogonal to the molecular axis. The diffusion Monte ...
Singlet vs. triplet interelectronic repulsion in confined atoms
(Elsevier, 2018)
Hund’s multiplicity rule invariably holds for the ground configurations of few-electron atoms as well as those of multi-electron quantum dots. However, the ordering of the corresponding interelectronic repulsions exhibits ...
Simple and analytical function for the Stark profile of the Hα line and its application to plasma characterization
(Elsevier, 2018)
The increasing application of plasma based technologies over a wide range of fields has led to the necessity of an optimal determination of the characteristic parameters of the plasma systems. Optical Emission Spectroscopy ...
Quantum defect asymptotics at the critical charge: A study of the integrality conjecture
(Elsevier, 2018)
A single (n, ℓ) electron outside an (N −1)-electron atomic core is bound as long as Z > Zc = N − 1. A conjecture is examined, according to which the quantum defect of the outermost electron satisfies limZ!Zc δn,ℓ(Z) = Nℓ, ...
Theoretical description of the molecular fooprint of self-assembled monolayers of gold nanoparticles and surfaces
(Universidad de Córdoba, 2011)
Confined orbitals in fullerenes and quantum dots calculated by analytic continuation method
(Springer, 2021)
The Schrödinger equation with a Gaussian potential to model a confined system as a quantum dot or a hydrogen atom inside a fullerene is solved by using the analytic continuation method. The use of the Rodrigues formula ...
Stability after confinement of the H atom
(Elsevier, 2019)
The stability of a spherically confined atomic system when confinement is removed is studied. We consider s, p, d, and f states of the Hydrogen atom confined by a finite barrier. The stability is characterized in terms of ...