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Frustrated Heisenberg antiferromagnet on the honeycomb lattice: Spin gap and low-energy parameters by Bishop, R. F.; Li, P. H. Y.; Götze, O.; Richter, J.; Campbell, C. E. is a scholarly article available to read on EtoBox.
What is Frustrated Heisenberg antiferromagnet on the honeycomb lattice: Spin gap and low-energy parameters about?
We use the coupled cluster method implemented to high orders of approximation to investigate the frustrated spin-$\frac{1}{2}$ $J_{1}$--$J_{2}$--$J_{3}$ antiferromagnet on the honeycomb lattice with isotropic Heisenberg interactions of strength $J_{1} > 0$ between nearest-neighbor pairs, $J_{2}>0$ between next-nearest-neighbor pairs, and $J_{3}>0$ between next-next-neareast-neighbor pairs of spins. In particular, we study both the ground-state (GS) and lowest-lying triplet excited-state properties in the case $J_{3}=J_{2} \equiv \kappa J_{1}$, in the window $0 \leq \kappa \leq 1$ of the frustration parameter, which includes the (tricritical) point of maximum classical frustration at $\kappa_{{\rm cl}} = \frac{1}{2}$. We present GS results for the spin stiffness, $\rho_{s}$, and the zero-field uniform magnetic susceptibility, $\chi$, which complement our earlier results for the GS energy per spin, $E/N$, and staggered magnetization, $M$, to yield a complete set of accurate low-energy parameters for the model. Our results all point towards a phase diagram containing two quasiclassical antiferromagnetic phases, one with N\'eel order for $\kappa < \kappa_{c_{1}}$, and the other with co
- Author
- Bishop, R. F.; Li, P. H. Y.; Götze, O.; Richter, J.; Campbell, C. E.
- Published
- 2015
- Language
- EN
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