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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Antikink dispersions of the J(1)-J(2) sawtooth spin-1/2 anisotropic Heisenberg antiferromagnetic chain
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Antikink dispersions of the J(1)-J(2) sawtooth spin-1/2 anisotropic Heisenberg antiferromagnetic chain

机译:j(1)-j(2)锯齿旋转1/2各向异性Heisenberg反铁磁链的抗逆脉孔分散

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摘要

Antikink dispersion of the asymmetric J(1)-J(2) sawtooth spin-1/2 anisotropic Heisenberg antiferromagnetic (AFM) chain has been derived. Value of spin-gap is obtained by estimating the minimum of dispersion relation variationally. The exact doubly degenerate ground state energy has been derived at the symmetric point, J(1) = J(2), for the whole anisotropic regime. Analytic form of dispersion relations of three different antikink states is obtained and their validity in the parameter space is discussed. The value of spin-gap, specific heat and susceptibility are estimated numerically by diagonalizing the Hamiltonian for chains of finite length. The inherent frustration of this AFM model leads to the appearance of additional peak at low-temperatures in the specific heat.
机译:不对称J(1)-J(2)锯齿旋转1/2各向异性Heisenberg反铁磁(AFM)链的抗励态分散。 通过估计变异的最小分散关系来获得自旋间隙的值。 对于整个各向异性制度,在对称点,J(1)= J(2)衍生出精确的双退化地面能量。 获得了三种不同的抗逆孔态的分散关系的分析形式,并讨论了参数空间中的有效性。 通过对沿着有限长度链的汉密尔顿山来对角度估计旋转间隙,比热和易感性的值。 该AFM模型的固有挫折导致特定热量低温下的额外峰的外观。

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