论文标题
地面相图和耦合三聚体链的热力学
Ground-state phase diagram and thermodynamics of coupled trimer chains
论文作者
论文摘要
密度基质重新归一化组和量子蒙特卡洛法用于描述磁场h中的耦合三聚体链。哈密顿量包含涉及Trimer Intimer耦合J1(作为能量单位)和Trimer Inter-Trimer耦合J2的交换术语,以及沿Z方向的磁场H的Zeeman相互作用。每三聚体M的磁化结果是根据比率J = J2/J1的正和负值的,从中得出富场诱导的基态相图H vs.J的结果,并存在Luttinger液体,即1/3-Plateau(M = 1/2),以及完全极性磁力化的一项(M = 3/2)。此外,在以前的j值的先前制度下,显示了从1/3-Plateau的自旋波散分散体的零场Lanczos计算。此外,我们还报告了沿开放链的三聚体的相关函数的衰减,以及平均的两麦克农子分布。基态为$ 0 <j \ leq 1 $ ferrimagnetic,是$ -1 \ leq j <0 $的单元。在单线阶段,沿腿的自旋相关功能具有类似于自旋1/2线性链的抗磁力幂律衰减,因此表明基态由三个耦合的抗磁磁性链制成。在单线阶段,每个位点由1/| J |归一化的无量化热磁化敏感性作为温度$ t \ rightarrow 0 $,接近$ 1/π^2 $。对于铁磁阶段,我们适合化合物PB $ _3 $ cu $ _3 $(po $ _4 $)$ _ 4 $的实验数据的敏感性,并估算型号交换耦合:J1 = 74.8 K和J = 0.4。这些值暗示了磁备激发的一系列能量,这些能量与pb $ _3 $ _3 $ cu $ _3 $(po $ _4 $)的中子散射实验的数据一致。 1/3-Plateau仅在1/| J | = 0的情况下以J <0关闭。
The density matrix renormalization group and quantum Monte Carlo method are used to describe coupled trimer chains in a magnetic field h. The Hamiltonian contains exchange terms involving the intra-trimer coupling J1 (taken as the unit of energy) and the inter-trimer coupling J2, plus the Zeeman interaction for a magnetic field h along the z direction. Results for the magnetization per trimer m are calculated in regimes of positive and negative values of the ratio J = J2 / J1, from which the rich field-induced ground state phase diagram h vs. J is derived, with the presence of Luttinger liquid, the 1/3-plateau (m = 1/2), and the one of fully polarized magnetization (m = 3/2). Also, the zero-field Lanczos calculation of spin-wave dispersion from the 1/3-plateau for $S^z = 1$ is shown at the previous regimes of J values. In addition, we also report on the decay of correlation functions of trimers along open chains, as well as the average two-magnon distribution. The ground state is ferrimagnetic for $0<J\leq 1$, and is a singlet for $-1\leq J<0$. In the singlet phase, the spin correlation functions along the legs present an antiferromagnetic power-law decay, similar to the spin-1/2 linear chain, thus suggesting that the ground state is made of three coupled antiferromagnetically oriented chains. In the singlet phase, the dimensionless thermal magnetic susceptibility per site normalized by 1/|J| gets closer to $1/π^2$ as the temperature $T\rightarrow 0$. For the ferrimagnetic phase, we fit the susceptibility to the experimental data for the compound Pb$_3$Cu$_3$(PO$_4$)$_4$ and estimate the model exchange couplings: J1=74.8 K and J=0.4. These values imply a range of energies for the magnon excitations that are in accord with the data from neutron scattering experiments on Pb$_3$Cu$_3$(PO$_4$)$_4$ for two excitation modes. The 1/3-plateau closes only at 1/|J|=0 with J<0.