论文标题

通过可变范围相互作用的纠缠分布

Distribution of entanglement with variable range interactions

论文作者

Lakkaraju, Leela Ganesh Chandra, Ghosh, Srijon, Roy, Saptarshi, De, Aditi Sen

论文摘要

研究了具有可变范围相互作用的各向异性量子XY模型,并在存在均匀的横向磁场的情况下研究了量子纠缠的分布。我们报告了\ emph {定性}在遥远位点之间纠缠中生长的可能性,而随着站点之间的距离的增加,相互作用范围的增加范围会呈指数变化。有趣的是,我们发现这种纠缠增强并不普遍存在,并且取决于分数化点,这是一组特定的系统参数,其中系统的零温度状态是完全可分离的。特别是,我们观察到,在零温度时,当选择系统参数以外的分解点以外时,与范围相互作用相比,与分量化点之间的情况相比,由于可变范围相互作用而引起的纠缠长度的增量更为明显。通过使用与单个站点相对于单个站点的所有双方纠缠的总和,我们还表明,两部分纠缠的共享性受到限制,从而确立了他们的一夫性质。此外,我们注意到,因子化点根据相互作用的损失定律而重新分配,并为此提供了ANSATZ。我们揭示了规范平衡状态因未进入的温度而随着相互作用范围的升高而增加的,从而证明了在长期相互作用的存在下纠缠纠缠的鲁棒性增强,并且只有当系统参数之间选择系统参数之间,则在两对因子化点之间选择了系统参数。我们应用基于能量的纠缠证人,为观察到的鲁棒性与温度提供理由。

Distribution of quantum entanglement is investigated for an anisotropic quantum XY model with variable range interactions and in the presence of a uniform transverse magnetic field. We report the possibility of \emph{qualitative} growth in the entanglement between distant sites with an increase in the range of interactions that vary either exponentially or polynomially as the distance between the sites increases. Interestingly, we find that such entanglement enhancement is not ubiquitous and is dependent on the factorization points, a specific set of system parameters where the zero-temperature state of the system is fully separable. In particular, we observe that at zero-temperature, when the system parameters are chosen beyond the pair of factorization points, the increments in entanglement length due to variable range interactions are more pronounced compared to the situation when the parameters lie in between the factorization points. By employing the sum of all the bipartite entanglements with respect to a single site, we also show that the shareability of the bipartite entanglements are constrained, thereby establishing their monogamous nature. Furthermore, we note that the factorization points get reallocated depending on the laws of interaction fall-offs and provide an ansatz for the same. We reveal that the temperature at which the canonical equilibrium state becomes entangled from an unentangled one increases with the increase in the range of interactions, thereby demonstrating enhanced robustness in entanglement against temperature in the presence of long-range interactions and only when the system parameters are chosen between the pair of factorization points. We apply an energy-based entanglement witness to provide a justification to the observed robustness with temperature.

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