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Competing phases in spin ladders with ring exchange and frustration

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arxiv 1612.00016 v1 pith:ETTEVQVH submitted 2016-11-30 cond-mat.str-el

classification cond-mat.str-el
keywords ladderscouplingexchangephasesringfrustrationphaseaddition
verification ladder T0 review T1 audit T2 compute T3 formal
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The ground state properties of spin-1/2 ladders are studied, emphasizing the role of frustration and ring exchange coupling. We present a unified field theory for ladders with general coupling constants and geometry. Rich phase diagrams can be deduced by using a renormalization group calculation for ladders with in--chain next nearest neighbor interactions and plaquette ring exchange coupling. In addition to established phases such as Haldane, rung singlet, and dimerized phases, we also observe a surprising instability towards an incommensurate phase for weak interchain couplings, which is characterized by an exotic coexistence of self-consistent ferromagnetic and anti-ferromagnetic order parameters.

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