首页> 外文期刊>Information Theory, IEEE Transactions on >On the Power of PPT-Preserving and Non-Signalling Codes
【24h】

On the Power of PPT-Preserving and Non-Signalling Codes

机译:PPT保留和非信令代码的功能

获取原文
获取原文并翻译 | 示例
           

摘要

We derive one-shot upper bounds for quantum noisy channel codes. We do so by regarding a channel code as a bipartite operation with an encoder belonging to the sender and a decoder belonging to the receiver, and imposing constraints on the bipartite operation. We investigate the power of codes whose bipartite operation is non-signalling from Alice to Bob, positive-partial transpose (PPT) preserving, or both, and derive a simple semidefinite program for the achievable entanglement fidelity. Using the semidefinite program, we show that the non-signalling-assisted quantum capacity for memoryless channels is equal to the entanglement-assisted capacity. We also relate our PPT-preserving codes and the PPT-preserving entanglement distillation protocols studied by Rains. Applying these results to a concrete example, the 3-dimensional Werner–Holevo channel, we find that codes that are non-signalling and PPT-preserving can be strictly less powerful than codes satisfying either one of the constraints, and therefore provide a tighter bound for unassisted codes. Furthermore, PPT-preserving non-signalling codes can send 1 qubit perfectly over two uses of the channel, which has no quantum capacity. We discuss whether this can be interpreted as a form of superactivation of quantum capacity.
机译:我们导出量子噪声信道码的单次上限。通过将信道代码视为属于发送方的编码器和属于接收方的解码器的双向操作,并在双向操作上施加约束,可以做到这一点。我们研究了从Alice到Bob的双向操作无信号传递,正向部分转置(PPT)保留或两者兼而有之的代码的功能,并推导了可实现的纠缠保真度的简单半定程序。使用半定程序,我们证明了无记忆通道的无信号辅助量子容量等于纠缠辅助容量。我们还关联了Rains研究的保存PPT的代码和保存PPT的纠缠蒸馏协议。将这些结果应用到3维Werner-Holevo信道的具体示例中,我们发现非信令和PPT保留的代码的功能可能比满足任一约束条件的代码严格地功能更弱,因此提供了更紧密的边界用于非辅助代码。而且,保留PPT的非信令代码可以在没有量子容量的信道的两次使用中完美发送1个量子比特。我们讨论这是否可以解释为量子能力的超活化形式。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号