activity
19952015
most citedSupersymmetric variational energies of 3d confined potentials

21 citations · 53 across the 5 of their papers we have counts for

collaborators

9 papers

cond-mat.stat-mech2015★ 2 cited

Approximate solution for Fokker-Planck equation

M. T. Araujo, E. Drigo Filho

In this paper, an approximate solution to a specific class of the Fokker-Planck equation is proposed. The solution is based on the relationship between the Schrödinger type equatio…

physics.chem-ph2015

Reply to comment on "Quantum Confinement in Hydrogen Bond"

Carlos da Silva dos Santos, Elso Drigo Filho, Regina Maria Ricotta

We reply to the comments on our paper "Quantum Confinement in Hydrogen Bond" (Int. J. Quantum Chem. 115 (2015) 765 DOI: 10.1002/qua.24894) made by Matthias Heger and Martin A. Suhm…

hep-th2003★ 21 cited

Supersymmetric variational energies of 3d confined potentials

Elso Drigo Filho, Regina Maria Ricotta

Within the approach of Supersymmetric Quantum Mechanics associated with the variational method a recipe to construct the superpotential of three dimensional confined potentials in…

hep-th2002★ 20 cited

Supersymmetric variational energies for the confined Coulomb system

Elso Drigo Filho, Regina Maria Ricotta

The methodology based on the association of the Variational Method with Supersymmetric Quantum Mechanics is used to evaluate the energy states of the confined hydrogen atom.

nucl-th2001★ 10 cited

Generalized Ladder Operators for Shape-invariant Potentials

Elso Drigo Filho, M. A. Candido Ribeiro

A general form for ladder operators is used to construct a method to solve bound-state Schrödinger equations. The characteristics of supersymmetry and shape invariance of the syste…

hep-th2000

Induced Variational Method from Supersymmetric Quantum Mechanics and the Screened Coulomb Potential

Elso Drigo Filho, Regina Maria Ricotta

The formalism of Supersymmetric Quantum Mechanics supplies a trial wave function to be used in the Variational Method. The screened Coulomb potential is analysed within this approa…