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Excitations from a chiral magnetized state of a frustrated quantum spin liquid (2009)

Abstract
We study excitations in weakly interacting pairs of quantum spin ladders coupled through geometrically frustrated bonds. The ground state is a disordered spin liquid, that at high fields is replaced by an ordered chiral helimagnetic phase. The spectra observed by high-field inelastic neutron scattering experiments on the prototype compound Sul-Cu2Cl4 are qualitatively different from those in the previously studied frustration-free spin liquids. Beyond the critical field Hc=3.7 T, the soft mode that drives the quantum phase transition spawns two separate excitations: a gapless Goldstone mode and a massive magnon. Additional massive quasiparticles are clearly visible below Hc, but are destroyed in the ordered phase. In their place one observes a sharply bound excitation continuum.. Comment: 6 pages, 4 figures

Publication details
Download http://arxiv.org/abs/0909.3355
Repository arXiv (United States)
Keywords Condensed Matter - Strongly Correlated Electrons
Type text