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Second-order quantum corrections for the frustrated spatially anisotropic spin-1/2 Heisenberg antiferromagnet on a square lattice

机译:方格上受挫的空间各向异性自旋1/2 Heisenberg反铁磁体的二阶量子校正

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摘要

The effects of quantum fluctuations due to directional anisotropy and frustration between nearest neighbors and next-nearest neighbors of the quantum spin-1/2 Heisenberg antiferromagnet on a square lattice are investigated using spin-wave expansion. We have calculated the spin-wave-energy dispersion in the entire Brillouin zone, renormalized spin-wave velocities, and the magnetization up to second order in 1/S expansion for the antiferromagnetic Neel and collinear antiferromagnetic stripe phases. It is shown that the second-order corrections become significant with increase in frustration. With these corrections magnetizations and spin-wave velocities for both the phases become zero at the quantum critical points as expected from other numerical and analytical methods. We have shown that the transition between the two ordered phases are always separated by the disordered paramagnetic phase.
机译:利用自旋波展开研究了自旋1/2海森堡反铁磁体的最近邻和次近邻之间的方向各向异性和受挫引起的量子涨落的影响。我们已经计算了整个布里渊区的自旋波能量色散,重新归一化的自旋波速度以及反铁磁Neel和共线反铁磁磁条相在1 / S扩展中的磁化强度达到二阶。结果表明,随着挫折感的增加,二阶校正变得很重要。通过这些校正,如其他数值和分析方法所预期的,两个相位的磁化强度和自旋波速度在量子临界点处变为零。我们已经表明,两个有序相之间的过渡总是被无序顺磁相隔开。

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