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Heisenberg's uncertainty relation:Violation and reformulation

机译:Heisenberg的不确定性关系:违反和重构

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The uncertainty relation formulated by Heisenberg in 1927 describes a trade-off between the error of a measurement of one observable and the disturbance caused on another complementary observable so that their product should be no less than a limit set by Planck's constant. In 1980, Braginsky, Vorontsov, and Thorne claimed that this relation leads to a sensitivity limit for gravitational wave detectors. However, in 1988 a model of position measurement was constructed that breaks both this limit and Heisenberg's relation. Here, we discuss the problems as to how we reformulate Heisenberg's relation to be universally valid and how we experimentally quantify the error and the disturbance to refute the old relation and to confirm the new relation.
机译:1927年Heisenberg制定的不确定性关系描述了一种可观察到的测量误差与另一个互补可观察的扰动之间的折衷,使得其产品应不小于Planck常数设定的限制。 1980年,布拉克斯基沃特斯科夫和托罗恩声称该关系导致引力波检测器的灵敏度限制。但是,在1988年,构建了一个位置测量模型,即破坏该限制和海森伯格的关系。在这里,我们讨论了如何为我们如何重新设计Heisenberg的关系,以普遍有效,以及我们如何通过实验地量化误差和干扰来反驳旧关系,并确认新关系。

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