Limitations of quantum computing with Gaussian cluster states

Limitations of quantum computing with Gaussian cluster states
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高斯簇态量子计算的局限性

DOI:
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发表时间:
2010
期刊:
影响因子:
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通讯作者:
J. Eisert
J. Eisert
中科院分区:
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文献类型:
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作者:
M. Ohliger;K. Kieling;J. Eisert

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我们讨论高斯簇状态对于基于测量的量子计算的潜力和局限性。使用高斯投影纠缠对态框架,我们表明,无论对分布在一般图上的系统执行什么高斯局部测量,除了指数抑制校正之外,量子信息的传输和处理都不可能超出某个影响区域。我们还证明,即使在任意非高斯局部测量下,有限宽度的高斯簇状态板也无法携带逻辑量子信息,即使允许连续变量系统中的量子位进行复杂的编码。这可以通过适当收缩代表无限维量子系统的张量网络来证明。结果可以看作是提高了对高斯簇状态的量子纠错和容错的要求,并指出了基于测量的量子计算非高斯资源状态的必要性。结果同样可以被视为参考高斯量子中继器网络。
We discuss the potential and limitations of Gaussian cluster states for measurement-based quantum computing. Using a framework of Gaussian-projected entangled pair states, we show that no matter what Gaussian local measurements are performed on systems distributed on a general graph, transport and processing of quantum information are not possible beyond a certain influence region, except for exponentially suppressed corrections. We also demonstrate that even under arbitrary non-Gaussian local measurements, slabs of Gaussian cluster states of a finite width cannot carry logical quantum information, even if sophisticated encodings of qubits in continuous-variable systems are allowed for. This is proven by suitably contracting tensor networks representing infinite-dimensional quantum systems. The result can be seen as sharpening the requirements for quantum error correction and fault tolerance for Gaussian cluster states and points toward the necessity of non-Gaussian resource states for measurement-based quantum computing. The results can equally be viewed as referring to Gaussian quantum repeater networks.