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- W1970759270 abstract "The energy and photoluminescence spectra of a two-dimensional electron gas in the fractional quantum Hall regime are studied. The single-particle properties of reversed-spin quasielectrons $({mathrm{QE}}_{R}$'s) as well as the pseudopotentials of their interaction with one another and with Laughlin quasielectrons (QE's) and quasiholes (QH's) are calculated. Based on the short-range character of the ${mathrm{QE}}_{R}--{mathrm{QE}}_{R}$ and ${mathrm{QE}}_{R}--mathrm{QE}$ repulsion, the partially unpolarized incompressible states at the filling factors $ensuremath{nu}=frac{4}{11}$ and $frac{5}{13}$ are postulated within Haldane's hierarchy scheme. To describe photoluminescence, the family of bound $h({mathrm{QE}}_{R}{)}_{n}$ states of a valence hole h and n ${mathrm{QE}}_{R}$'s are predicted in analogy to the found earlier fractionally charged excitons $h{mathrm{QE}}_{n}.$ The binding energy and optical selection rules for both families are compared. The $h{mathrm{QE}}_{R}$ is found radiative in contrast to the dark $hmathrm{QE},$ and the $h({mathrm{QE}}_{R}{)}_{2}$ is found nonradiative in contrast to the bright $h{mathrm{QE}}_{2}.$" @default.
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- W1970759270 date "2001-10-08" @default.
- W1970759270 modified "2023-10-12" @default.
- W1970759270 title "Energy, interaction, and photoluminescence of spin-reversed quasielectrons in fractional quantum Hall systems" @default.
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- W1970759270 doi "https://doi.org/10.1103/physrevb.64.165318" @default.
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