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- W2076616540 abstract "A nonrelativistic classification of charged molecular hydrogenic, helium, and mixed helium-hydrogenic chains with one or two electrons which can exist in a strong magnetic field $Bensuremath{lesssim}{10}^{16}$ G is given. It is shown that for both $1eensuremath{-}2e$ cases at the strongest studied magnetic fields the longest hydrogenic chain contains at most five protons, indicating the existence of ${mathrm{H}}_{5}{}^{4+}$ and ${mathrm{H}}_{5}{}^{3+}$ ions, respectively. In the case of the helium chains, the longest chains can exist at the strongest studied magnetic fields with three and four $ensuremath{alpha}$ particles for $1eensuremath{-}2e$ cases with the possible existence of ${mathrm{He}}_{3}{}^{5+}$ and ${mathrm{He}}_{4}{}^{6+}$, respectively. For mixed helium-hydrogenic chains, the number of heavy centers can reach five for the highest magnetic fields studied. In general, for a fixed magnetic field, two-electron chains are more bound than one-electron chains." @default.
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- W2076616540 date "2010-04-09" @default.
- W2076616540 modified "2023-09-30" @default.
- W2076616540 title "Charged hydrogenic, helium, and helium-hydrogenic molecular chains in a strong magnetic field" @default.
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- W2076616540 doi "https://doi.org/10.1103/physreva.81.042503" @default.
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