2019IOP Conference Series Materials Science and EngineeringOpen access

Bound state energies of a diatomic quantum dot molecule in a magnetic field

M. Ma’arif, Suparmi Suparmi, C. Cari

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Abstract

Abstract We investigate energy levels of a diatomic quantum dot by using an analytical method. We use Schrodinger equation for spherical quantum dot molecule in the presence of a static magnetic field and a confining potential which is Morse potential. We obtain the ground state and the excited states eigen solutions which are compared with the experimental data.

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Abstract We investigate energy levels of a diatomic quantum dot by using an analytical method. We use Schrodinger equation for spherical quantum dot molecule in the presence of a static magnetic field and a confining potential which is Morse potential. We obtain the ground state and the excited states eigen solutions which are compared with the experimental data.

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Available abstract

Abstract We investigate energy levels of a diatomic quantum dot by using an analytical method. We use Schrodinger equation for spherical quantum dot molecule in the presence of a static magnetic field and a confining potential which is Morse potential. We obtain the ground state and the excited states eigen solutions which are compared with the experimental data.

Key concepts: Diatomic molecule, Quantum dot, Excited state, Morse potential, Schrödinger equation, Ground state, Physics, Bound state

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