Recursion Formula for the Green's Function of a Hamiltonian for Several Types of Dirac Delta-Function Potentials in Curved Spaces

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Erman, Fatih

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BRONZE

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Yes

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Abstract

In this short article, we nonperturbatively derive a recursive formula for the Green's function associated with finitely many point Dirac delta potentials in one dimension. We extend this formula to the one for the Dirac delta potentials supported by regular curves embedded in two-dimensional manifolds and for the Dirac delta potentials supported by two-dimensional compact manifolds embedded in three-dimensional manifolds. Finally, this formulation allows us to find the recursive formula of the Green's function for the point Dirac delta potentials in two- and three-dimensional Riemannian manifolds, where the renormalization of coupling constant is required.

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Keywords

Dirac delta potentials, Green's functions, Renormalization, Riemannian manifolds, Renormalization, Riemannian manifolds, Dirac delta potentials, FOS: Physical sciences, Green's functions, Mathematical Physics (math-ph), Mathematical Physics

Fields of Science

0103 physical sciences, 01 natural sciences

Citation

Erman, F. (2016). Recursion formula for the Green's function of a Hamiltonian for several types of Dirac delta-function potentials in curved spaces. Turkish Journal of Physics, 40(3), 316-323. doi:10.3906/fiz-1604-28

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1

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40

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3

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316

End Page

323
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