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Capacity estimation and verification of quantum channels with arbitrarily correlated errors

机译:具有任意相关误差的量子通道的容量估计和验证

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The central figure of merit for quantum memories and quantum communication devices is their capacity to store and transmit quantum information. Here, we present a protocol that estimates a lower bound on a channel’s quantum capacity, even when there are arbitrarily correlated errors. One application of these protocols is to test the performance of quantum repeaters for transmitting quantum information. Our protocol is easy to implement and comes in two versions. The first estimates the one-shot quantum capacity by preparing and measuring in two different bases, where all involved qubits are used as test qubits. The second verifies on-the-fly that a channel’s one-shot quantum capacity exceeds a minimal tolerated value while storing or communicating data. We discuss the performance using simple examples, such as the dephasing channel for which our method is asymptotically optimal. Finally, we apply our method to a superconducting qubit in experiment.
机译:量子存储器和量子通信设备的主要优点是它们存储和传输量子信息的能力。在这里,我们提出了一种协议,即使存在任意相关的错误,该协议也可以估算通道的量子容量的下限。这些协议的一种应用是测试用于传输量子信息的量子中继器的性能。我们的协议易于实现,并且有两个版本。第一种方法是通过在两个不同的碱基中进行制备和测量来估算单发量子容量,其中所有涉及的量子位均用作测试量子位。第二个动态地验证了在存储或传输数据时,通道的单次量子容量超过了最小容许值。我们使用简单的示例来讨论性能,例如我们的方法渐近最优的移相通道。最后,我们在实验中将我们的方法应用于超导量子位。

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