论文标题
相互作用的两体耦合振荡器系统中的纠缠
Entanglement in interacting quenched two-body coupled oscillator system
论文作者
论文摘要
在这项工作中,我们探讨了量子淬灭对具有四重相互作用的两体耦合振荡器系统的纠缠度量的影响。我们在扰动框架下使用不变的运算符方法来计算该系统的基础状态。我们给出具有非高斯,四分之一相互作用项的系统的总密度矩阵的分析表达式。使用这种降低的密度矩阵,我们显示了使用副本技巧和Renyi纠缠熵的两种纠缠措施的分析计算。此外,我们对这些纠缠措施进行了数值估计,相对于无量纲参数$(t/ΔT$),并在三个制度(即;较晚的时间行为,围绕淬火点和早期行为。我们对这些纠缠措施的变化评论不同的耦合强度。还讨论了不同顺序的Renyi熵的变化。
In this work, we explore the effects of a quantum quench on the entanglement measures of a two-body coupled oscillator system having quartic interaction. We use the invariant operator method, under a perturbative framework, for computing the ground state of this system. We give the analytical expressions for the total and reduced density matrix of the system having non-Gaussian, quartic interaction terms. Using this reduced density matrix, we show the analytical calculation of two entanglement measures viz., Von Neumann entanglement entropy using replica trick and Renyi entanglement entropy. Further, we give a numerical estimate of these entanglement measures with respect to the dimensionless parameter $(t/δt$) and show its behaviour in the three regimes, i.e; late time behaviour, around the quench point and the early time behaviour. We comment on the variation of these entanglement measures for different orders of coupling strength. The variation of Renyi entropy of different orders has also been discussed.