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Updated: Jun 26, 2026

Phase Diagram Characterization Using Magnetic Beads as Liquid Carriers
Published on: September 4, 2015
Haldane and dimer phases in a frustrated spin chain: an exact groundstate and associated topological phase transition
Shaon Sahoo1,2, Dayasindhu Dey1, Sudip Kumar Saha1
1S. N. Bose National Centre for Basic Sciences, Block JD, Sector III, Salt Lake, Kolkata 700106, India.
Abstract:
A Heisenberg spin-schain with alternating ferromagnetic (FM) (-J1F<0) and antiferromagnetic (J1A>0) nearest-neighbor (NN) interactions, exhibits the dimer and spin-2sHaldane phases in the limitsJ1F/J1A→0andJ1F/J1A→∞respectively. These two phases are understood to be topologically equivalent. Induction of the frustration through the next NN FM interaction (-J2F<0) produces a very rich quantum phase diagram. With frustration, the whole phase diagram is divided into a FM and a nonmagnetic (NM) phase. Fors= 1/2, the full NM phase is seen to be of Haldane-dimer type, but fors> 1/2, a spiral phase comes between the FM and the Haldane-dimer phases. The study of a suitably defined string-order parameter and spin-gap at the phase boundary indicates that the Haldane-dimer and spiral phases have different topological characters. We also find that, along theJ2F=12J1Fline in the NM phase, an NN dimer state is theexactgroundstate, providedJ1A>JC=κJ1Fwhereκ⩽s+hfor applied magnetic fieldh. Without magnetic field, the position ofJCis on the FM-NM phase boundary whens= 1/2, but fors> 1/2, the location ofJCis on the phase separation line between the Haldane-dimer and spiral phases.
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