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A Fractional Schrodinger Equation and Its Solution

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Date

2010

Journal Title

Journal ISSN

Volume Title

Publisher

Springer/plenum Publishers

Open Access Color

Green Open Access

Yes

OpenAIRE Downloads

6

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2

Publicly Funded

No
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Top 10%
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Top 10%
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Top 10%

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Abstract

This paper presents a fractional Schrodinger equation and its solution. The fractional Schrodinger equation may be obtained using a fractional variational principle and a fractional Klein-Gordon equation; both methods are considered here. We extend the variational formulations for fractional discrete systems to fractional field systems defined in terms of Caputo derivatives to obtain the fractional Euler-Lagrange equations of motion. We present the Lagrangian for the fractional Schrodinger equation of order alpha. We also use a fractional Klein-Gordon equation to obtain the fractional Schrodinger equation which is the same as that obtained using the fractional variational principle. As an example, we consider the eigensolutions of a particle in an infinite potential well. The solutions are obtained in terms of the sines of the Mittag-Leffler function.

Description

Keywords

Lagrangian And Hamiltonian Approach, Fractional derivatives and integrals, Closed and approximate solutions to the Schrödinger, Dirac, Klein-Gordon and other equations of quantum mechanics, Variational principles of physics, Lagrangian and Hamiltonian approach, Fractional partial differential equations, Lagrange's equations

Fields of Science

0103 physical sciences, 0101 mathematics, 01 natural sciences

Citation

Muslih, S.I., Baleanu, D., Agrawal, O.P. (2010). A fractional schrödinger equation and its solution. International Journal of Theoretical Physics, 49(8), 1746-1752. http://dx.doi.org/ 10.1007/s10773-010-0354-x

WoS Q

Q3

Scopus Q

Q2
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OpenCitations Citation Count
73

Source

International Journal of Theoretical Physics

Volume

49

Issue

8

Start Page

1746

End Page

1752
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Citations

CrossRef : 46

Scopus : 82

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Mendeley Readers : 12

SCOPUS™ Citations

82

checked on Feb 24, 2026

Web of Science™ Citations

72

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Page Views

4

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3.46549948

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