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Achieving the Holevo capacity of a pure state classical-quantum channel via unambiguous state discrimination

机译:通过明确的状态判别获得纯态经典量子通道的霍夫容量

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We prove that the ultimate channel capacity, the Holevo bound, for sending classical data on a quantum channel (the so-called classical-quantum, or cq channel) can be achieved for a pure-state cq channel by decoding codewords via a collective quantum measurement based on unambiguous state discrimination (USD). In cq communication theory, the channel decoder acts directly on the modulated codeword waveform in the quantum (viz., electromagnetic or optical) domain, and it is known that collective measurements on long codeword blocks are needed to attain the Holevo capacity, which is strictly larger than the Shannon capacity of the classical channel induced by any specific measurement choice on each channel use. The USD measurement based channel decoder we propose, can distinguish finite blocklength codeword quantum states unambiguously (i.e., an incorrect codeword is never chosen) provided one allows for a finite probability of obtaining an inconclusive (erasure) outcome. We show that the probability of the inconclusive outcome goes to zero for asymptotically long codewords whenever the code rate is below the Holevo bound. The USD channel decoder is an addition to a small list of other collective measurements known to achieve the Holevo capacity (such as, the square root measurement, the minimum probability of error measurement, the sequential decoding measurement, and the quantum successive cancellation decoder for the cq polar code). A structured optical receiver design is not known yet for any of these decoders. What makes the USD decoder special is that there is no classical analogue to truly unambiguous discrimination (say, of samples drawn from a set of probability distributions). Secondly, the erasures-only decoding of USD is likely to result in a better channel reliability function. Finally, the USD measurement seems more likely to lead naturally to a structured optical receiver design and implementation.
机译:我们证明,纯态cq通道可以通过集体量子对码字进行解码,从而实现在量子通道(所谓的经典量子或cq通道)上发送经典数据的最终通道容量Holevo边界。根据明确的国家歧视(USD)进行衡量。在cq通信理论中,信道解码器直接作用于量子(即电磁或光)域中的已调制码字波形,并且众所周知,需要对长码字块进行集体测量才能获得Holevo容量,这是严格的大于经典信道的香农容量,该经典信道是由每种信道使用中的任何特定测量选择引起的。我们提出的基于USD测量的信道解码器可以明确区分有限的块长码字量子状态(即永远不会选择不正确的码字),前提是允许获得不确定(擦除)结果的有限概率。我们表明,当码率低于Holevo界限时,渐近长码字的不确定结果的概率为零。 USD通道​​解码器是一小部分已知为实现Holevo容量的其他集体测量的补充(例如,平方根测量,最小概率误差测量,顺序解码测量以及针对该传感器的量子逐次抵消解码器) CQ极性代码)。对于这些解码器中的任何一个,尚不知道结构化的光接收器设计。 USD解码器之所以与众不同,是因为没有经典的模拟可真正进行明确的区分(例如,从一组概率分布中提取的样本)。其次,USD的仅擦除解码可能会导致更好的信道可靠性功能。最后,美元计量似乎更有可能自然导致结构化光接收器的设计和实现。

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