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Hosten O  Rakher MT  Barreiro JT  Peters NA  Kwiat PG 《Nature》2006,439(7079):949-952
The logic underlying the coherent nature of quantum information processing often deviates from intuitive reasoning, leading to surprising effects. Counterfactual computation constitutes a striking example: the potential outcome of a quantum computation can be inferred, even if the computer is not run. Relying on similar arguments to interaction-free measurements (or quantum interrogation), counterfactual computation is accomplished by putting the computer in a superposition of 'running' and 'not running' states, and then interfering the two histories. Conditional on the as-yet-unknown outcome of the computation, it is sometimes possible to counterfactually infer information about the solution. Here we demonstrate counterfactual computation, implementing Grover's search algorithm with an all-optical approach. It was believed that the overall probability of such counterfactual inference is intrinsically limited, so that it could not perform better on average than random guesses. However, using a novel 'chained' version of the quantum Zeno effect, we show how to boost the counterfactual inference probability to unity, thereby beating the random guessing limit. Our methods are general and apply to any physical system, as illustrated by a discussion of trapped-ion systems. Finally, we briefly show that, in certain circumstances, counterfactual computation can eliminate errors induced by decoherence.  相似文献   
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Kwiat PG  Barraza-Lopez S  Stefanov A  Gisin N 《Nature》2001,409(6823):1014-1017
Entangled states are central to quantum information processing, including quantum teleportation, efficient quantum computation and quantum cryptography. In general, these applications work best with pure, maximally entangled quantum states. However, owing to dissipation and decoherence, practically available states are likely to be non-maximally entangled, partially mixed (that is, not pure), or both. To counter this problem, various schemes of entanglement distillation, state purification and concentration have been proposed. Here we demonstrate experimentally the distillation of maximally entangled states from non-maximally entangled inputs. Using partial polarizers, we perform a filtering process to maximize the entanglement of pure polarization-entangled photon pairs generated by spontaneous parametric down-conversion. We have also applied our methods to initial states that are partially mixed. After filtering, the distilled states demonstrate certain non-local correlations, as evidenced by their violation of a form of Bell's inequality. Because the initial states do not have this property, they can be said to possess 'hidden' non-locality.  相似文献   
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热轧带钢层流冷却设定模型的开发与实现   总被引:2,自引:1,他引:2  
分析了热轧带钢层流冷却的传热过程,基于传热过程给出了冷却控制的空冷和水冷温降计算模型,该模型为线性回归模型,不同于理论的指数温降模型,回归数据取自于现场,更具有实用性,具有模型结构简单、精度高的特点·对层流冷却的设定计算(预设定和修正设定计算)的程序实现方法进行了详细描述,讨论了层流冷却系统中的组别划分,并给出了冷却控制系统的数据流程·本系统的冷却能力强,具有较宽的冷却速率调整范围,运行情况以及使用控制效果良好,能满足现场生产以及新品种开发的要求·  相似文献   
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