Spin structure factor and quantum phases of frustrated spin-1/2 chains
Abstract
The static structure factor S(q) of frustrated spin-1/2 chains with isotropic exchange and a singlet ground state (GS) diverges at wave vector qm when the GS has quasi-long-range order (QLRO) with periodicity 2π/qm but S(qm) is finite in bond-order-wave (BOW) phases with finite-range spin correlations. Exact diagonalization and density matrix renormalization group (DMRG) calculations of S(q) indicate a decoupled phase with QLRO and qm = π/2 in chains with large antiferromagnetic exchange between second neighbors. S(qm) identifies quantum phase transitions based on GS spin correlations.
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