Field-induced quantum soliton lattice in a frustrated two-leg spin-1/2 ladder

Based on high-field (31)P nuclear magnetic resonance experiments and accompanying numerical calculations, it is argued that in the frustrated S=1/2 ladder compound BiCu(2)PO(6) a field-induced soliton lattice develops above a critical field of μ(0)H(c1)=20.96(7) T. Solitons result from the fractiona...

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Veröffentlicht in:Physical review letters 2013-05, Vol.110 (18), p.187201-187201, Article 187201
Hauptverfasser: Casola, F, Shiroka, T, Feiguin, A, Wang, S, Grbić, M S, Horvatić, M, Krämer, S, Mukhopadhyay, S, Conder, K, Berthier, C, Ott, H-R, Rønnow, H M, Rüegg, Ch, Mesot, J
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Sprache:eng
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Zusammenfassung:Based on high-field (31)P nuclear magnetic resonance experiments and accompanying numerical calculations, it is argued that in the frustrated S=1/2 ladder compound BiCu(2)PO(6) a field-induced soliton lattice develops above a critical field of μ(0)H(c1)=20.96(7) T. Solitons result from the fractionalization of the S=1, bosonlike triplet excitations, which in other quantum antiferromagnets are commonly known to experience Bose-Einstein condensation or to crystallize in a superstructure. Unlike in spin-Peierls systems, these field-induced quantum domain walls do not arise from a state with broken translational symmetry and are triggered exclusively by magnetic frustration. Our model predicts yet another second-order phase transition at H(c2)>H(c1), driven by soliton-soliton interactions, most likely corresponding to the one observed in recent magnetocaloric and other bulk measurements.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.110.187201