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Phase diagram of the frustrated asymmetric ferromagnetic spin ladder

机译:令人沮丧的不对称铁磁旋转梯子的相图

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We present a systematic investigation on the ground state of an asymmetric two-leg spin ladder (where exchange couplings of the legs are unequal) with ferromagnetic (FM) nearest-neighbor interaction and diagonal anti-ferromagnetic frustration using the density matrix renormalization group method. When the ladder is strongly asymmetric with moderate frustration, a magnetic canted state is observed between an FM state and a singlet dimerized state. The phase boundaries are dependent on the asymmetric strength. On the other hand, when the asymmetric strength is intermediate, a so-called spin-stripe state (spins align parallel on the same legs, but antiparallel on rungs) is discovered, and the system experiences a first-order phase transition from the FM state to the spin-stripe state upon increasing frustration. Numerical evidence is presented for interpretation of the phase diagram in terms of frustration and the asymmetric strength.
机译:利用密度矩阵重整化群方法,系统地研究了具有铁磁(FM)近邻相互作用和对角反铁磁阻挫的非对称双支腿自旋梯(其中支腿的交换耦合不相等)的基态。当阶梯高度不对称且挫折感适中时,在FM态和单线态二聚态之间观察到磁倾斜态。相界取决于非对称强度。另一方面,当非对称强度处于中间时,会发现一种所谓的自旋条纹状态(自旋在同一支腿上平行排列,但在横档上反平行),并且随着挫折感的增加,系统会经历从FM状态到自旋条纹状态的一阶相变。给出了从挫折感和非对称强度方面解释相图的数值证据。

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