论文标题
在相同的粒子系统中生成不可区分的性:作为量子资源激活器的空间变形
Generating indistinguishability within identical particle systems: spatial deformations as quantum resource activators
论文作者
论文摘要
相同的量子子系统可以拥有没有任何经典对应物的特性:难以区分。作为一种长期存在的现象,已经证明相同的粒子的不可区分性是各种基本物理结果的核心。当与空间自由度有关时,可以通过适当定义的空间变形重叠它们的空间波函数,使其不可分割的成分无法区分。根据量子力学定律,任何旨在解决仅取决于空间自由度并在重叠区域执行的数量的测量值都无法将测量结果分配给系统内的一个特定粒子。结果是一个纠缠状态,在相同成分之间共享测得的属性。在这项工作中,我们介绍了一般$ n $粒子场景中变形概念的连贯形式化,并适当地衡量了无法区分性的程度。我们强调了非相同粒子场景的基本差异,并讨论了空间变形作为“空间本地化操作和经典通信”操作框架中纠缠激活因子的固有作用。
Identical quantum subsystems can possess a property which does not have any classical counterpart: indistinguishability. As a long-debated phenomenon, identical particles' indistinguishability has been shown to be at the heart of various fundamental physical results. When concerned with the spatial degree of freedom, identical constituents can be made indistinguishable by overlapping their spatial wave functions via appropriately defined spatial deformations. By the laws of quantum mechanics, any measurement designed to resolve a quantity which depends on the spatial degree of freedom only and performed on the regions of overlap is not able to assign the measured outcome to one specific particle within the system. The result is an entangled state where the measured property is shared between the identical constituents. In this work, we present a coherent formalization of the concept of deformation in a general $N$-particle scenario, together with a suitable measure of the degree of indistinguishability. We highlight the basic differences with nonidentical particles scenarios and discuss the inherent role of spatial deformations as entanglement activators within the "spatially localized operations and classical communication" operational framework.