Lehrstuhl für Theoretische Physik I, TU Dortmund, Dortmund, Germany.
Phys Rev Lett. 2010 Dec 31;105(26):267204. doi: 10.1103/PhysRevLett.105.267204. Epub 2010 Dec 29.
We show that the spin-liquid phase of the half-filled Hubbard model on the triangular lattice can be described by a pure spin model. This is based on a high-order strong coupling expansion (up to order 12) using perturbative continuous unitary transformations. The resulting spin model is consistent with a transition from three-sublattice long-range magnetic order to an insulating spin-liquid phase, and with a jump of the double occupancy at the transition. Exact diagonalizations of both models show that the effective spin model is quantitatively accurate well into the spin-liquid phase, and a comparison with the Gutzwiller projected Fermi sea suggests a gapless spectrum and a spinon Fermi surface.
我们表明,填充一半的 Hubbard 模型在三角晶格上的自旋液体相可以用纯自旋模型来描述。这是基于使用微扰连续幺正变换的高阶强耦合展开(最高阶数为 12)。得到的自旋模型与从三亚晶格长程磁有序到绝缘自旋液体相的转变一致,并且在转变处双占据的跳跃。两个模型的精确对角化都表明,有效自旋模型在自旋液体相中具有定量的准确性,并且与 Gutzwiller 投影费米海的比较表明了无能隙谱和自旋子费米面。