In the setting of entanglement-assisted quantum error-correcting codes (EAQECCs), the sender and the receiver have access to pre-shared entanglement. Such codes promise better information rates or improved error handling properties. Entanglement incurs costs and must be judiciously calibrated in designing quantum codes with good performance, relative to their deployment parameters. Revisiting known constructions, we devise tools from classical coding theory to better understand how the amount of entanglement can be varied. We present three new propagation rules and discuss how each of them affects the error handling. Tables listing the parameters of the best performing qubit and qutrit EAQECCs that we can explicitly construct are supplied for reference and comparison.
翻译:在设置缠绕辅助量子误差校正码(EAQECCs)时,发件人和接收人可以使用预先共享的缠绕码,这些编码可以提供更好的信息率或改进处理错误的特性。缠绕需要成本,在设计与部署参数相比性能良好的量子码时必须明智地加以校准。重新研究已知的构造,我们从古典编码理论中设计各种工具,以更好地了解缠绕的量如何变化。我们提出了三种新的传播规则,并讨论了其中每一种规则如何影响错误处理。列出我们可明确构建的精益qbit和qut EAQEC参数的表格供参考和比较。