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Mapping of composite hadrons into elementary hadrons and effective hadronic Hamiltonians

机译:复合强子到基本强子和有效强子哈密顿量的映射

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摘要

A mapping technique is used to derive in the context of constituent quark models effective Hamiltonians that involve explicit hadron degrees of freedom. The technique is based on the ideas of mapping between physical and ideal Fock spaces and shares similarities with the quasiparticle method of Weinberg. Starting with the Fock-space representation of single-hadron states, a change of representation is implemented by a unitary transformation such that composites are redescribed by elementary Bose and Fermi field operators in an extended Fock space. When the unitary transformation is applied to the microscopic quark Hamiltonian, effective, hermitian Hamiltonians with a clear physical interpretation are obtained. Applications and comparisons with other composite-particle formalisms of the recent literature are made using the nonrelativistic quark model.
机译:映射技术用于在构成夸克模型的上下文中得出涉及显式强子自由度的有效哈密顿量。该技术基于物理和理想Fock空间之间映射的思想,并且与Weinberg的拟粒子法具有相似之处。从单强子态的Fock-空间表示开始,通过a变换实现表示的更改,以便在扩展的Fock空间中通过基本Bose和Fermi场算子重新描述复合物。当将unit变换应用于微观夸克哈密顿量时,可获得具有清晰物理解释的有效厄米哈密顿量。使用非相对论夸克模型进行了应用和与最近文献中其他复合粒子形式主义的比较。

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