Publication | Open Access
Spectral and Thermodynamic Properties of a Strong-Leg Quantum Spin Ladder
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Citations
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References
2012
Year
Quantum LiquidEngineeringMany-body Quantum PhysicMagnetic ResonanceSpin DynamicSpin PhenomenonThermodynamic PropertiesMagnetismQuantum Mechanical PropertyQuantum MaterialsQuantum TheoryQuantum SciencePhysicsQuantum MagnetismTomonaga-luttinger Spin-liquid PhaseStrong-leg SystemNatural SciencesApplied PhysicsCondensed Matter PhysicsElementary Excitations
The strong-leg S=1/2 Heisenberg spin ladder system (C(7)H(10)N)(2)CuBr(4) is investigated using density matrix renormalization group calculations, inelastic neutron scattering, and bulk magnetothermodynamic measurements. Measurements showed qualitative differences compared to the strong-rung case. A long-lived two-triplon bound state is confirmed to persist across most of the Brillouin zone in a zero field. In applied fields, in the Tomonaga-Luttinger spin-liquid phase, elementary excitations are attractive, rather than repulsive. In the presence of weak interladder interactions, the strong-leg system is considerably more prone to three-dimensional ordering.
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