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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Entanglement for excited states of ultracold bosonic atoms in one-dimensional harmonic traps with contact interaction
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Entanglement for excited states of ultracold bosonic atoms in one-dimensional harmonic traps with contact interaction

机译:一维谐波陷阱中具有接触相互作用的超冷硼原子激发态的纠缠

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摘要

We have investigated quantum entanglement for two interacting ultracold bosonic atoms in one-dimensional harmonic traps. The effective potential is modeled by delta interaction. For this two-atom system, we have investigated quantum entanglement properties, such as von Neumann entropy and linear entropy for its ground state and excited states. Using a computational scheme that is different from previously employed, a total of the lowest 16 states are studied. Here we show the dependencies of entanglement properties under various interacting strengths. Comparisons for the ground state entanglement are made with earlier results in the literature. New results for the other 15 excited states are reported here.
机译:我们研究了一维谐波陷阱中两个相互作用的超冷硼原子的量子纠缠。有效电位通过增量相互作用来建模。对于这个双原子系统,我们研究了量子纠缠特性,例如冯·诺依曼熵和线性熵的基态和激发态。使用不同于先前采用的计算方案,总共研究了最低的16个状态。在这里,我们显示了各种相互作用强度下纠缠属性的依赖性。比较了基态纠缠与文献中的早期结果。其他15个激发态的新结果在这里报告。

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