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- W2057805218 abstract "We look into the nature of Lebed's states [i.e., the particular field-induced spin-density-wave state (FISDW) which appears at Lebed's resonance angle] and find that they are characterized by a set of integers (N,M) different from the surrounding FISDW. This pair of integers implies the quantized Hall conductivity at low temperatures; ${mathrm{ensuremath{sigma}}}_{mathit{a}mathit{b}}$=2${mathit{e}}^{2}$N/h and ${mathrm{ensuremath{sigma}}}_{mathit{a}mathit{c}}$=2${mathit{e}}^{2}$M/h where c and b are the corresponding lattice constants and h is the Planck constant. We predict the double quantum Hall effect, if both M and N are different from zero. We show also that the dips observed in the magnetoresistance can be interpreted in terms of the FISDW fluctuation which produces a sharp peak in ${mathrm{ensuremath{sigma}}}_{mathit{a}mathit{a}}$ at Lebed's resonances." @default.
- W2057805218 created "2016-06-24" @default.
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- W2057805218 date "1994-06-01" @default.
- W2057805218 modified "2023-09-26" @default.
- W2057805218 title "Lebed’s resonance and field-induced spin-density waves" @default.
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- W2057805218 doi "https://doi.org/10.1103/physrevb.49.15356" @default.
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