the effect of a long-range correlated-hopping interaction on bariev spin chains

Clicks: 11
ID: 203696
2015
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Abstract
We introduce a long-range particle and spin interaction into the standard Bariev model and show that this interaction is equivalent to a phase shift in the kinetic term of the Hamiltonian. When the particles circle around the chain and across the boundary, the accumulated phase shift acts as a twist boundary condition with respect to the normal periodic boundary condition. This boundary phase term depends on the total number of particles in the system and also the number of particles in different spin states, which relates to the spin fluctuations in the system. The model is solved exactly via a unitary transformation by the coordinate Bethe ansatz. We calculate the Bethe equations and work out the energy spectrum with varying number of particles and spins.
Reference Key
yang2015entropythe Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Tao Yang;Fa-Kai Wen;Kun Hao;Li-Ke Cao;Rui-Hong Yue
Journal European journal of medicinal chemistry
Year 2015
DOI
10.3390/e17096044
URL
Keywords Keywords not found

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