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首页> 外文期刊>International Journal of Quantum Chemistry >THE FREEON THEORY OF MAGNETISM .1. THE HEISENBERG INTERACTION
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THE FREEON THEORY OF MAGNETISM .1. THE HEISENBERG INTERACTION

机译:磁性自由理论1。海森堡互动

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The freeon theory of magnetism is a viable alternative to the well-known Heisenberg theory. Ln particular, the freeon-exchange theory provides a deeper insight into the nature of the magnetic interaction than does the spin-exchange theory. In addition, it avoids the superfluous M-S quantum number in zero-field splitting, the overcounting of spin states, the spin frustration, and the spin paradigm. The freeon-exchange theory employs the algebra of the symmetric group and/or the unitary group in place of the spin algebra. The basis vectors of freeon theory are the Gel'fand states which are uniquely labeled by Gel'fand diagrams; the latter provide both the electron configuration and the spin quantum number. Both the spin and the freeon formulations support the Lande interval rule. In this article, we apply freeon theory to transition-metal dimers, trimers, and tetramers; these are examples of molecular magnets which have applications to microcircuitry. The freeon theory follows the permutation-group principle laid down by Herman Weyl over one-half a century ago. (C) 1997 John Wiley & Sons, Inc. [References: 15]
机译:磁性的自由理论是对著名的海森堡理论的可行替代。特别是,自由交换理论比自旋交换理论提供了对磁性相互作用本质的更深入的了解。另外,它避免了零场分裂中多余的M-S量子数,自旋状态的过度计数,自旋受挫和自旋范式。自由交换理论使用对称组和/或the组的代数代替自旋代数。自由论的基本向量是由Gel'fand图唯一标记的Gel'fand状态。后者提供电子构型和自旋量子数。自旋和自由公式均支持兰德区间规则。在本文中,我们将自由子理论应用于过渡金属二聚体,三聚体和四聚体。这些是应用于微电路的分子磁体的例子。自由理论遵循了半个世纪前赫尔曼·韦尔(Herman Weyl)提出的置换群原则。 (C)1997 John Wiley&Sons,Inc. [参考:15]

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