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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Violation of Heisenberg's error-disturbance uncertainty relation in neutron-spin measurements
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Violation of Heisenberg's error-disturbance uncertainty relation in neutron-spin measurements

机译:中子自旋测量中海森堡误差-干扰不确定性关系的违反

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摘要

In its original formulation, Heisenberg's uncertainty principle dealt with the relationship between the error of a quantum measurement and the thereby induced disturbance on the measured object. Meanwhile, Heisenberg's heuristic arguments have turned out to be correct only for special cases. An alternative universally valid relation was derived by Ozawa in 2003. Here, we demonstrate that Ozawa's predictions hold for projective neutron-spin measurements. The experimental inaccessibility of error and disturbance claimed elsewhere has been overcome using a tomographic method. By a systematic variation of experimental parameters in the entire configuration space, the physical behavior of error and disturbance for projective spin-12 measurements is illustrated comprehensively. The violation of Heisenberg's original relation, as well as the validity of Ozawa's relation become manifest. In addition, our results conclude that the widespread assumption of a reciprocal relation between error and disturbance is not valid in general.
机译:在其最初的表述中,海森堡的不确定性原理处理的是量子测量误差与由此对被测物体产生的干扰之间的关系。同时,海森堡的启发式论证仅在特殊情况下才是正确的。小泽在2003年推导出了另一种普遍有效的关系。在这里,我们证明小泽的预测适用于投射中子自旋测量。使用断层扫描方法已经克服了其他地方声称的错误和干扰的实验不可访问性。通过在整个配置空间中系统地改变实验参数,全面说明了自旋12测量的误差和干扰的物理行为。违反海森堡的原始关系以及小泽关系的合法性变得显而易见。此外,我们的结果得出结论,即错误和干扰之间的相互关系的广泛假设通常是无效的。

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