Two-dimensional hydrogen-like atom in a weak magnetic field

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Abstract

We consider a non-relativistic two-dimensional (2D) hydrogen-like atom in a weak, static, uniform magnetic field perpendicular to the atomic plane. Within the framework of the Rayleigh-Schrödinger perturbation theory, using the Sturmian expansion of the generalized radial Coulomb Green function, we derive explicit analytical expressions for corrections to an arbitrary planar hydrogenic bound-state energy level, up to the fourth order in the strength of the perturbing magnetic field. In the case of the ground state, we correct an expression for the fourth-order correction to energy available in the literature.

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APA

Szmytkowski, R. (2018). Two-dimensional hydrogen-like atom in a weak magnetic field. European Physical Journal Plus, 133(8). https://doi.org/10.1140/epjp/i2018-12126-7

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