首页> 外文期刊>Acta Physica Polonica. B, Particle Physics and Field Theory, Nuclear Physics, Theory of Relativity >FINITE TEMPERATURE QUANTUM CORRELATIONS IN SU(2)_c QUARK STATES AND QUANTUM SPIN MODELS
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FINITE TEMPERATURE QUANTUM CORRELATIONS IN SU(2)_c QUARK STATES AND QUANTUM SPIN MODELS

机译:SU(2)_c量子状态和量子自旋模型中的有限温度量子相关

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摘要

The entanglement at finite temperatures is analyzed by using thermal models for colored quarks making up the hadron physical states. We have found that these quantum correlations entirely vanish at T_c ≥ m_q/ln(1.5). For temperatures larger than T_c the correlations are classical. We have also worked out the entanglement for the transverse Ising spin chain. In dependence on both temperature T and transverse field λ we can identify a certain region, where the quantum effects are likely to dominate the system. We suggest the mutual information as a quantitative measure for the correlations in the ground state.
机译:通过使用热模型对构成强子物理状态的彩色夸克进行有限温度下的纠缠。我们发现,这些量子相关性在T_c≥m_q / ln(1.5)时完全消失。对于高于T_c的温度,相关关系是经典的。我们还解决了横向Ising自旋链的纠缠。根据温度T和横向场λ,我们可以确定某个区域,在该区域中量子效应可能会主导整个系统。我们建议将互信息作为基态相关性的定量度量。

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