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Generation of maximally entangled states in a two-component Bose-Einstein condensate

机译:两组分玻色-爱因斯坦凝聚物中最大纠缠态的产生

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摘要

We study analytically the generation of maximally entangled states (MESs) formed by a two-component BoseEinstein condensate (BEC) trapped in an adiabatically driven single potential well. Under the condition of the linear interaction controlled by a driven field being much stronger than the effective nonlinear interaction between the components, MESs, as some particular cases of superpositions of spin coherent states (SSCS), may emerge periodically along with not only time evolution but also the equidifferent change of the linear coupling strength at a particular time.
机译:我们分析性地研究了由绝热驱动的单个势阱中捕获的两组分玻色-爱因斯坦凝聚物(BEC)形成的最大纠缠态(MES)的产生。在受驱动场控制的线性相互作用远强于组件之间的有效非线性相互作用的条件下,MES(作为自旋相干态(SSCS)叠加的某些特殊情况)不仅会随着时间演变,还会周期性出现。线性耦合强度在特定时间的等价变化。

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