Magnon mode truncation in a rung-dimerized asymmetric spin ladder

Physics – Condensed Matter – Strongly Correlated Electrons

Scientific paper

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11 pages

Scientific paper

10.1103/PhysRevB.76.174431

An exactly solvable effective model is suggested for an asymmetric spin ladder with dimerized rungs. Magnon mode truncation originated from magnon decay (recently observed in the 1D compound ${\rm IPA-CuCl}_3$) is naturally described within this model. Using Bethe Ansatze we described a one-magnon sector and obtained relations between interaction constants of the model and experimentally observable quantities such as the gap and truncation energies, spin velocity and the truncation wave vector. It is also shown that structure factor turns to zero at the truncation point.

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