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Qubit metrology and decoherence

机译:Qubit计量和退相干

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摘要

Quantum properties of the probes used to estimate a classical parameter can be used to attain accuracies that beat the standard quantum limit. When qubits are used to construct a quantum probe, it is known that initializing n qubits in an entangled state, rather than in a separable state, can improve the measurement uncertainty by a factor of 1/root n. We investigate how the measurement uncertainty is affected when the individual qubits in a probe are subjected to decoherence. In the face of such decoherence, we regard the rate R at which qubits can be generated and the total duration tau of a measurement as fixed resources, and we determine the optimal use of entanglement among the qubits and the resulting optimal measurement uncertainty as functions of R and tau.
机译:用于估计经典参数的探针的量子性质可用于获得超过标准量子极限的准确度。当使用量子位来构造量子探针时,众所周知,以纠缠状态而不是处于可分离状态初始化n个量子位可以将测量不确定性提高1 / root n倍。我们研究了当探头中的各个量子位受到去相干性时,测量不确定度如何受到影响。面对这种退相干,我们将可以生成量子位的速率R和测量的总持续时间tau视为固定资源,并确定量子位之间的纠缠的最佳使用以及由此产生的最佳测量不确定性为R和tau。

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