Lüscher Andreas, Milstein Alexander I, Sushkov Oleg P
School of Physics, University of New South Wales, Sydney 2052, Australia.
Phys Rev Lett. 2007 Jan 19;98(3):037001. doi: 10.1103/PhysRevLett.98.037001. Epub 2007 Jan 16.
Starting from the t-J model, we derive the effective field theory describing the spin dynamics in insulating La(2-x)Sr(x)CuO(4), x approximately < 0.055, at low temperature. The theory results in a disordered spiral ground state, in which the staggered component of the copper spins is confined in a plane determined by the spin anisotropies. The static spin structure factor obtained in our calculations is in perfect agreement with neutron scattering data over the whole range of doping in both, the Néel and the spin-glass phase. We show that topological defects (spin vortex-antivortex pairs) are an intrinsic property of the disordered spiral ground state.
从t-J模型出发,我们推导了描述低温下绝缘的La(2-x)Sr(x)CuO(4)(x约<0.055)中自旋动力学的有效场论。该理论得出一种无序螺旋基态,其中铜自旋的交错分量被限制在由自旋各向异性所确定的平面内。我们计算得到的静态自旋结构因子在奈尔相和自旋玻璃相的整个掺杂范围内与中子散射数据完全吻合。我们表明拓扑缺陷(自旋涡旋 - 反涡旋对)是无序螺旋基态的一个固有属性。