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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Distributed quantum-information processing with minimal local resources
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Distributed quantum-information processing with minimal local resources

机译:本地资源最少的分布式量子信息处理

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We present a protocol for growing graph states, the resource for one-way quantum computing, when the available entanglement mechanism is highly imperfect. The distillation protocol is frugal in its use of ancilla qubits, requiring only a single ancilla qubit when the noise is dominated by one Pauli error, and two for a general noise model. The protocol works with such scarce local resources by never postselecting on the measurement outcomes of purification rounds. We find that such a strategy causes fidelity to follow a biased random walk, and that a target fidelity is likely to be reached more rapidly than for a comparable postselecting protocol. An analysis is presented of how imperfect local operations limit the attainable fidelity. For example, a single Pauli error rate of 20% can be distilled down to similar to 10 times the imperfection in local operations.
机译:当可用的纠缠机制非常不完善时,我们提出了一种用于增长图状态的协议,即单向量子计算的资源。蒸馏方案在使用辅助量子比特上是省钱的,当噪声由一个Pauli误差控制时,仅需要一个辅助量子比特,而对于一般噪声模型,则仅需要一个辅助量子比特。该协议通过从未对纯化回合的测量结果进行后选择来使用如此稀缺的本地资源。我们发现,这种策略会导致保真度遵循有偏的随机游走,并且与可比的后选协议相比,目标保真度可能会更快地达到。分析了不完善的本地运营如何限制可获得的保真度。例如,可以将20%的单个Pauli错误率降低到接近本地操作缺陷10倍的程度。

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