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Semidefinite Programming Converse Bounds for Quantum Communication

机译:用于量子通信的SEMIDEFINITE编程逆界

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We derive several efficiently computable converse bounds for quantum communication over quantum channels in both the one-shot and asymptotic regime. First, we derive one-shot semidefinite programming (SDP) converse bounds on the amount of quantum information that can be transmitted over a single use of a quantum channel, which improve the previous bound from [Tomamichel/Berta/Renes, Nat. Commun. 7, 2016]. As applications, we study quantum communication over depolarizing channels and amplitude damping channels with finite resources. Second, we find an SDP-strong converse bound for the quantum capacity of an arbitrary quantum channel, which means the fidelity of any sequence of codes with a rate exceeding this bound will vanish exponentially fast as the number of channel uses increases. Furthermore, we prove that the SDP-strong converse bound improves the partial transposition bound introduced by Holevo and Werner. Third, we prove that this SDP strong converse bound is equal to the so-called max-Rains information, which is an analog to the Rains information introduced in [Tomamichel/Wilde/Winter, IEEE Trans. Inf. Theory 63:715, 2017]. Our SDP strong converse bound is weaker than the Rains information, but it is efficiently computable for general quantum channels.
机译:我们在单次和渐近制度中获得多量子通信的数量有效可计算的互联网通信。首先,我们在可以在单一使用量子通道上传输的量子信息量来推导一拍的SemideFinite编程(SDP)兼容界限,这些量子可以通过量子通道传输,这改善了从[Tomamichel / Berta / Renes,NAT中的先前界限。安排。 7,2016]。作为应用,我们将量子通信研究过散极通道和具有有限资源的幅度阻尼通道。其次,我们找到了对任意量子通道的量子容量的SDP - 强的悔改,这意味着随着信道数量的数量增加,任何具有超过这一界限的速率的序列的保真度将迅速消失。此外,我们证明了SDP - 强的匡威界限改善了HOLEVO和WERNER引入的部分转换束。第三,我们证明了这种SDP强大的匡威绑定等于所谓的最大雨量信息,这是[Tomamichel / Wilde / Winter,IEEE Trans中引入的下雨信息。 INF。理论63:715,2017]。我们的SDP强大的匡威绑定比下雨信息较弱,但它是有效的普通量子通道可计算的。

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