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The maximal negative ion of molecules in Schrödinger, Hartree-Fock, and Müller theories

Published 5 Jul 2021 in math-ph, math.MP, and quant-ph | (2107.01826v2)

Abstract: Bounds are studied for the maximum number, NcN_c, of electrons that can be bound to KK atoms of the total nuclear charge ZZ. It is proved that $N_c &lt; \min{2Z+1, 1.22Z + 3Z<sup>{1/3}}$ in Schr\"odinger theory. This improves Lieb's bound $N_c &lt; 2Z+K$ and extends Nam's results for an atom to the molecule. Moreover, the ionization conjectures for the molecules in Hartree-Fock and M\"uller theories are proved, i.e., NcZ+CKRmin<sup>3N_c \le Z + CKR_\mathrm{min}<sup>{-3}, where RminR_\mathrm{min} is the minimal distance between atoms and CC is a universal constant.

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