Magnetic bound states in the quarter-filled ladder system α'-NaV2O5
P. Lemmens, M. Fischer, G. Els, G. Güntherodt, A. S. Mishchenko, M. Weiden, R. Hauptmann, C. Geibel, F. Steglich
Abstract
Raman scattering in the quarter-filled spin ladder system alpha'-NaV2O5 shows in the dimerized singlet ground state (T ≤ TSP=35K) an unexpected sequence of three magnetic bound states. Our results suggest that the recently proposed mapping onto an effective spin chain for T > TSP has to be given up in favor of the full topology and exchange paths of a ladder in the dimerized phase for T < TSP. As the new ground state we propose a dynamic superposition of energetically nearly degenerate dimer configurations on the ladder.
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