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Pure-state transformations and catalysis under operations that completely preserve positivity of partial transpose

机译:在完全保留部分转座正性的操作下的纯态转化和催化

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Motivated by the desire to better understand the class of quantum operations on bipartite systems that completely preserve positivity of partial transpose (PPT operations) and its relation to the class LOCC (local operations and classical communication), we present some results on deterministic bipartite pure-state transformations by PPT operations. Restricting our attention to the case in which we start with a rank K maximally entangled state, we give a necessary condition for transforming it into a given pure state, which we show is also sufficient when K is 2 and the final state has Schmidt rank 3. We show that it is sufficient for all K and all final states provided a conjecture about a certain family of semidefinite programs is true. We also demonstrate that the phenomenon of catalysis can occur under PPT operations and that, unlike LOCC catalysis, a maximally entangled state can be a catalyst. Finally, we give a necessary and sufficient condition for the possibility of transforming a rank K maximally entangled state to an arbitrary pure state by PPT operations assisted by some maximally entangled catalyst.
机译:为了更好地了解完全保留部分转置的正性(PPT运算)及其与LOCC类(本地运算和经典通信)的关系的二分系统上的量子运算的类别,我们提出了确定性二分纯通过PPT操作进行状态转换。将注意力集中在以等级K最大纠缠态开始的情况下,我们给出了将其转换为给定纯态的必要条件,当K为2且最终状态具有Schmidt等级3时,我们证明这是足够的我们证明,只要对某个半确定程序族是正确的,对于所有K和所有最终状态就足够了。我们还证明了在PPT操作下可能会发生催化现象,并且与LOCC催化不同,最大纠缠态可能是催化剂。最后,我们给出了一个必要的充分条件,通过某些最大纠缠的催化剂辅助的PPT操作,可以将秩K最大的纠缠态转换为任意的纯态。

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