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FERRETING OUT THE FLUFFY BUNNIES: ENTANGLEMENT CONSTRAINED BY GENERALIZED SUPERSELECTION RULES

机译:提出蓬勃发展的罪魁祸首:由通用的超选规则约束的纠缠

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Entanglement is a resource central to quantum information (QI). In particular, entanglement shared between two distant parties allows them to do certain tasks that would otherwise be impossible. In this context, we study the effect on the available entanglement of physical restrictions on the local operations that can be performed by the two parties. We enforce these physical restrictions by generalized superselection rules (SSRs), which we define to be associated with a given group of physical transformations. Specifically the generalized SSR is that the local operations must be covariant with respect to that group. Then we operationally define the entanglement constrained by a SSR, and show that it may be far below that expected on the basis of a naieve (or "fluffy bunny") calculation. We consider two examples. The first is a particle number SSR. Using this we show that for a two-mode BEC (with Alice owning mode A and Bob mode B), the useful entanglement shared by Alice and Bob is identically zero. The second, a SSR associated with the symmetric group, is applicable to ensemble QI processing such as in liquid-NMR. We prove that even for an ensemble comprising many pairs of qubits, with each pair described by a pure Bell state, the entanglement per pair constrained by this SSR goes to zero for a large ensemble.
机译:纠缠是量子信息(QI)的核心资源。特别是,两个远方共享的纠缠使他们可以执行某些原本不可能的任务。在这种情况下,我们研究了物理约束对双方可以执行的本地操作的可用纠缠的影响。我们通过广义超选规则(SSR)来实施这些物理限制,我们将其定义为与给定的一组物理转换相关联。具体而言,广义SSR是本地操作必须相对于该组是协变的。然后,我们在操作上定义受SSR约束的纠缠,并表明它可能远远低于基于天真(或“蓬松兔子”)计算所预期的纠缠。我们考虑两个例子。第一个是粒子编号SSR。使用此数据,我们显示出对于双模式BEC(Alice拥有模式A和Bob模式B),Alice和Bob共享的有用纠缠相同为零。第二个是与对称基团关联的SSR,适用于整体QI处理,例如液相NMR。我们证明,即使对于包含多对量子位的合奏,每对都由纯贝尔状态描述,对于大型合奏,受此SSR约束的每对纠缠也变为零。

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