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首页> 外文期刊>Quantum information & computation >ENTANGLEMENT-ASSISTED QUANTUM CODES ACHIEVING THE QUANTUM SINGLETON BOUND BUT VIOLATING THE QUANTUM HAMMING BOUND
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ENTANGLEMENT-ASSISTED QUANTUM CODES ACHIEVING THE QUANTUM SINGLETON BOUND BUT VIOLATING THE QUANTUM HAMMING BOUND

机译:纠缠辅助量子编码实现量子单键绑定,但违反量子汉明绑定

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摘要

We give an infinite family of degenerate entanglement-assisted quantum error-correcting codes (EAQECCs) which violate the EA-quantum Hamming bound for non-degenerate EAQECCs and achieve the EA-quantum Singleton bound, thereby proving that the EA-quantum Hamming bound does not asymptotically hold for degenerate EAQECCs. Unlike the previously known quantum error-correcting codes that violate the quantum Hamming bound by exploiting maximally entangled pairs of qubits, our codes do not require local unitary operations on the entangled auxiliary qubits during encoding. The degenerate EAQECCs we present are constructed from classical error-correcting codes with poor minimum distances, which implies that, unlike the majority of known EAQECCs with large minimum distances, our EAQECCs take more advantage of degeneracy and rely less on the error correction capabilities of classical codes.
机译:我们给出了无限个简并纠缠辅助量子纠错码(EAQECC),它们违反了非简并EAQECC的EA量子汉明约束,并实现了EA量子单峰约束,从而证明了EA量子汉明约束确实对于退化的EAQECC渐近地成立。与先前已知的量子纠错码不同,量子纠错码通过利用最大纠缠的量子位对来违反量子汉明约束,在编码过程中,我们的代码不需要对纠缠的辅助量子位进行局部unit运算。我们展示的退化EAQECC是由最小距离较差的经典纠错码构造而成的,这意味着,与大多数已知的最小距离较远的EAQECC不同,我们的EAQECC充分利用了退化性,并且对经典的纠错能力的依赖较少代码。

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