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Solving a two-electron quantum dot model in terms of polynomial solutions of a Biconfluent Heun Equation

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arxiv 1308.0815 v2 pith:FZRXSVUU submitted 2013-08-04 quant-ph cond-mat.mes-hallcond-mat.str-elmath-phmath.MP

classification quant-phcond-mat.mes-hallcond-mat.str-elmath-phmath.MP
keywords electronsequationbiconfluentexternalformheunpotentialsolutions
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The effects on the non-relativistic dynamics of a system compound by two electrons interacting by a Coulomb potential and with an external harmonic oscillator potential, confined to move in a two dimensional Euclidean space, are investigated. In particular, it is shown that it is possible to determine exactly and in a closed form a finite portion of the energy spectrum and the associated eigeinfunctions for the Schr\"odinger equation describing the relative motion of the electrons, by putting it into the form of a biconfluent Heun equation. In the same framework, another set of solutions of this type can be straightforwardly obtained for the case when the two electrons are submitted also to an external constant magnetic field.

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  1. Landau levels in a gravitational field: The Schwarzschild spacetime case

    gr-qc 2019-09 conditional novelty 5.0 of 10

    In Schwarzschild spacetime, a weak gravitational field splits Landau levels by an amount proportional to GMm times the square root of the magnetic field, with explicit Yukawa, power-law, and relativistic corrections derived.

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