Instituto de Fsíca, Pontificia Universidad Católica de Chile, Casilla, 306, Santiago, Chile.
Universidad Mayor, Santiago de Chile, Chile.
Sci Rep. 2017 Jul 25;7(1):6351. doi: 10.1038/s41598-017-05370-5.
In the late 80 s, a curious effect suggested by Aharanov et al. was found to lead to an anomalous amplification based on quantum measurements of weakly coupled systems. In this paper, we investigate the quantum control of the weak value amplification of a qubit system coupled to a meter. For the qubit system, the coupling occurs via a second non-interacting qubit, initially quantum correlated with the first one. We show that for weak measurements, the control can be remotely realized via the post-selected state of the second qubit or the degree of squeezing of the meter. In our study of the quantum control of the amplification, we can easily manipulate the degree of quantum correlations between the initially correlated qubits. We find that the degree of entanglement has no effect on the quantum control of the amplification. However, we also found a clear connection between the amplification and quantum discord like measurements as well as classical correlations between the qubits. Finally, we suggest an application of the amplification control on the enhancement of the quantum measurement accuracy, e.g. measuring the relative phase of the post-selected control qubit in a more precise way, as opposed to the non-amplified case.
80 年代后期,Aharanov 等人发现了一种奇特的效应,这种效应导致了基于弱耦合系统量子测量的异常放大。在本文中,我们研究了与计量器耦合的量子位系统的弱值放大的量子控制。对于量子位系统,通过与第一个量子位初始量子相关的第二个非相互作用的量子位发生耦合。我们表明,对于弱测量,可以通过第二个量子位的后选态或计量器的压缩程度来远程实现控制。在我们对放大的量子控制的研究中,我们可以轻松地操纵初始相关量子位之间的量子相关程度。我们发现纠缠度对放大的量子控制没有影响。然而,我们还发现了与量子失谐测量以及量子位之间的经典相关性之间的明显联系。最后,我们建议将放大控制应用于提高量子测量精度,例如以更精确的方式测量后选控制量子位的相对相位,而不是在未放大的情况下。