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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Thermodynamic properties of spin-1/2 ising-like Heisenberg model on triangle-based lattices
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Thermodynamic properties of spin-1/2 ising-like Heisenberg model on triangle-based lattices

机译:基于三角形的晶格上自旋1/2 Ising样Heisenberg模型的热力学性质

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摘要

Thermodynamic properties, specific heat and magnetic susceptibility, of spin-1/2 Ising-like Heisenberg model are investigated by an exact diagonalization method for small finite size kagome- and triangular-lattices up to 18-spins. The enhancement of magnetic susceptibility from the Curie-Weiss law and the peaks-structure of specific heat, rather generally detected experimentally in triangle-based spin systems including herbertsmithite, are interpreted as an intrinsic property of triangle-based frustrated spin systems with some extent of exchange anisotropy and are inferred as owing to a quantum-classical crossover.
机译:通过精确的对角化方法研究了高达18个自旋的小型有限尺寸的kagome和三角形晶格,研究了自旋1/2 Ising式Heisenberg模型的热力学性质,比热和磁化率。居里-魏斯定律和比热的峰结构的磁化率增强(通常在包括赫伯铁矿石的三角形自旋系统中通过实验检测到)被解释为基于三角形的受挫自旋系统的固有性质,在一定程度上交换各向异性,并归因于量子经典交叉。

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