Quantification of Entanglement from Magnetic Susceptibility for a Heisenberg Spin 1/2 system
arXiv:1204.5669 · doi:10.1016/j.physleta.2012.08.051
Abstract
Temperature and magnetic field dependent magnetization and extraction of entanglement from the experimental data is reported for dichloro(thiazole)copper(II), a Heisenberg spin chain system. The magnetic susceptibility vs. temperature plot exhibits signature of infinite spin chain. Isothermal magnetization measurements (as a function of magnetic field) were performed at various temperatures below the antiferromagnetic (AFM) ordering, where the AFM correlations persist significantly. These magnetization curves are fitted to the theoretically generated Bonner-Fisher model. Magnetic susceptibility can be used as a macroscopic witness of entanglement; using which entanglement is extracted from the experimentally measured magnetic data.
References in corpus (4)
- Quantum Communication through Spin Chain Dynamics: an Introductory Overview
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- Entanglement and Bell's inequality violation above room temperature in metal carboxylates
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Cited by in corpus (6)
- Magnetization process, bipartite entanglement and enhanced magnetocaloric effect of the exactly solved spin-1/2 Ising-Heisenberg tetrahedral chain
- Witnessing Entanglement and Quantum Correlations in Condensed Matter: A Review
- Signature of Quantum Entanglement in NH4CuPO4.H2O
- Dimerized ground states in spin-S frustrated systems
- Experimental Evidences of Quantum Phase Transition in a Spin Cluster Compound
- Linear mapping between magnetic susceptibility and entanglement in conventional and exotic one-dimensional superfluids