论文标题

沟通中的测量不兼容和量子优势

Measurement incompatibility and quantum advantage in communication

论文作者

Saha, Debashis, Das, Debarshi, Das, Arun Kumar, Bhattacharya, Bihalan, Majumdar, A. S.

论文摘要

测量不兼容性规定了在单个系统上不能同时进行的量子测量的存在。我们表明,从共享随机性辅助的D维经典系统中获得的一组输入输出概率与从d维量子策略中获得的集合相同,这些策略仅限于在任何通信场景中与共享随机性的兼容测量。因此,测量不兼容对于通信中的量子优势是必要的,而通信中的任何量子优势(有或没有共享的随机性)作为见证人在接收器末端以半设备独立的方式进行测量的证人。我们介绍了一类通信任务(随机访问代码的一般版本),以见证任意数量的量子测量值的不兼容,并与作用于D维系统的任意结果,并就这些兼容测量的这些任务的成功指标提供通用的上限。我们确定了三个不兼容的排名一组的投影量子测量值,随机访问代码可以见证。最后,我们介绍了在通信方案中产生的不同概率分布集之间的通用关系 - 经典,具有或不共享随机性的量子,量子限制在具有或不具有共享随机性的兼容测量中。

Measurement incompatibility stipulates the existence of quantum measurements that cannot be carried out simultaneously on single systems. We show that the set of input-output probabilities obtained from d-dimensional classical systems assisted with shared randomness is the same as the set obtained from d-dimensional quantum strategies restricted to compatible measurements with shared randomness in any communication scenario. Thus, measurement incompatibility is necessary for quantum advantage in communication, and any quantum advantage (with or without shared randomness) in communication acts as a witness to the incompatibility of the measurements at the receiver's end in a semi-device-independent way. We introduce a class of communication tasks - a general version of random access codes - to witness incompatibility of an arbitrary number of quantum measurements with arbitrary outcomes acting on d-dimensional systems, and provide generic upper bounds on the success metric of these tasks for compatible measurements. We identify all sets of three incompatible rank-one projective qubit measurements that random access codes can witness. Finally, we present the generic relationship between different sets of probability distributions - classical, quantum with or without shared randomness, and quantum restricted to compatible measurements with or without shared randomness - produced in communication scenarios.

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