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Pairing in 4-component fermion systems: The bulk limit of SU(4)-symmetric Hamiltonians

机译:配对中的4分量费米子系统:SU(4)-对称哈密顿量的体积极限

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Fermion systems with more than two components can exhibit pairing condensates of a much more complex structure than the well-known single BCS condensate of spin-up and spin-down fermions. In the framework of the exactly solvable SO(8) Richardson-Gaudin (RG) model with SU(4)-symmetric Hamiltonians, we show that the BCS approximation remains valid in the thermodynamic limit of large systems for describing the ground-state energy and the canonical and quasiparticle excitation gaps. Correlations beyond BCS pairing give rise to a spectrum of collective excitations, but these do not affect the bulk energy and quasiparticle gaps.
机译:具有两个以上成分的费米子系统可显示出比众所周知的自旋和自旋费米子的单个BCS冷凝物复杂得多的结构的配对冷凝物。在具有SU(4)对称哈密顿量的完全可解SO(8)Richardson-Gaudin(RG)模型的框架中,我们证明了BCS近似值在描述基态能量和能量的大型系统的热力学极限中仍然有效。正则和准粒子激发间隙。 BCS配对以外的相关性会引起一整套的集体激发,但这些不会影响整体能量和准粒子间隙。

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