Approximate ground state energies of one dimensional potential wells by the s-matrix formalism

dc.contributorGraduate Program in Physics.
dc.contributor.advisorBeker, Haluk.
dc.contributor.authorErkol, Hakan.
dc.date.accessioned2023-03-16T10:37:37Z
dc.date.available2023-03-16T10:37:37Z
dc.date.issued2003.
dc.description.abstractOne dimensional potential wells are described as a collection of consecutive thin slices, each approximated by a Dirac delta well. Bound state energies of these Dirac delta well conglomerates are calculated, using a method based on Transfer and S-Matrix formalisms. It is observed that the method, a variant of the Born approximation, works best for the ground state energies of narrow and shallow wells. The approximate results compare favorably with the known exact results of several potential well problems.
dc.format.extent30cm.
dc.format.pagesix, 41 leaves;
dc.identifier.otherPHYS 2003 E75
dc.identifier.urihttps://digitalarchive.library.bogazici.edu.tr/handle/123456789/13657
dc.publisherThesis (M.S.)-Bogazici University. Institute for Graduate Studies in Science and Engineering, 2003.
dc.relationIncludes appendices.
dc.relationIncludes appendices.
dc.subject.lcshS-matrix theory.
dc.titleApproximate ground state energies of one dimensional potential wells by the s-matrix formalism

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