Solution of the Schrödinger equation by a high order perturbation method based on a linear reference potential |
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Authors: | V. Ledoux M. Rizea G. Vanden Berghe |
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Affiliation: | a Vakgroep Toegepaste Wiskunde en Informatica, Ghent University, Krijgslaan 281-S9, B-9000 Gent, Belgium b “Horia Hulubei”, National Institute of Physics and Nuclear Engineering, P.O. Box MG-6, Magurele, Bucharest, Romania |
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Abstract: | The paper is devoted to the enhancement of the accuracy of the line-based perturbation method via the introduction of the perturbation corrections. We effectively construct the first and the second order corrections. We also perform the error analysis to predict that the introduction of successive corrections substantially enhances the order of the method from four, for the zeroth order version, to six and ten when the first and the second-order corrections are included. In order to remove the effect of the accuracy loss due to near-cancellation of like-terms when evaluating the perturbation corrections we construct alternative asymptotic formulae using a Maple code. We also propose a procedure for choosing the step size in terms of the preset accuracy and give a number of numerical illustrations. |
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Keywords: | 02.30.Hq 02.60.Lj 02.70.Wz 03.65.Ge |
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