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Quantum replication at the Heisenberg limit

机译:海森堡极限的量子复制

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No process in nature can perfectly clone an arbitrary quantum state. But is it possible to engineer processes that replicate quantum information with vanishingly small error? Here we demonstrate the possibility of probabilistic super-replication phenomena where N equally prepared quantum clocks are transformed into a much larger number of M nearly perfect replicas, with an error that rapidly vanishes whenever M is small compared with N 2. The quadratic replication rate is the ultimate limit imposed by quantum mechanics to the proliferation of information and is fundamentally linked with the Heisenberg limit of quantum metrology.
机译:自然界中没有任何过程可以完美地克隆任意量子态。但是,是否有可能设计出能够以很小的误差复制量子信息的过程?在这里,我们证明了概率超复制现象的可能性,其中将N个准备充分的量子时钟转换成大量的M个近乎完美的复制品,并且当M小于N 2 。二次复制速率是量子力学对信息扩散施加的最终极限,并且与量子计量的海森堡极限有根本联系。

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