Veuillez utiliser cette adresse pour citer ce document : https://di.univ-blida.dz/jspui/handle/123456789/36211
Titre: The Solution of the Rotational Morse Potential Using the Method of Inverse Contour Representation
Auteur(s): Attaba, Alaaeddine
Yahiaoui, Sid-Ahmed (Encadreur)
Bradji, Okba (Co-Encadreur)
Mots-clés: Rotational morse potential
Pekeris approximation
Radial Schrodinger equation
Inverse contour representation
Curvilinear laplace transform
Confluent hypergeometric function
Euler Beta function
The riemann surfaces
Residues theorem of cauchy
Date de publication: 30-jui-2024
Editeur: Université Blida 1
Résumé: For non-zero values, we present an analytical solution of the radial Schrodinger equation for the rotating Morse potential using the Pekeris approximation within the framework of the method of inverse contour representation, The bound state energy eigenvalues and the corresponding eigenfunctions are obtained , The energy levels of all the bound states are easily calculated from this approche , The numerical calculations for four typical diatomic molecules HCl, CO ,H and LiH are compared with those obtained by other methods such as the super-symmetry, the variational, It is found that the results obtained by the present method are in good agreement with those obtained by other approximate methods. Keywords : Rotational morse potential , Pekeris approximation , Radial Schrodinger equation, Inverse contour representation, Curvilinear laplace transform , Confluent hypergeometric function, Euler Beta function, The riemann surfaces, Residues theorem of cauchy,
Description: ill., Bibliogr. Cote:ma-530-376
URI/URL: https://di.univ-blida.dz/jspui/handle/123456789/36211
Collection(s) :Mémoires de Master

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