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The 'Paradox' of Karl Popper and Its Connection with the Heisenberg Uncertainty Principle and Quantum Ghost Images

机译:卡尔波普尔的“悖论”及其与海森伯格不确定性原则和量子鬼图像的联系

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摘要

An experiment to verify the adequacy of the Heisenberg uncertainty principle, as proposed by Karl Popper and implemented in practice, is considered. As in the Einstein-Podolsky-Rosen paradox, the quantum properties of an entangled pair of elementary particles are used. In this case, a ghost image of a narrow slit is actually formed. The results of the experiment, at first glance, support a violation of the uncertainty principle. However, analysis of the spatial resolution of the slit ghost image shows that this is not correct. Amore correct description of diffraction in the case of spatially limited light beams, gives no violation of the uncertainty principle. The results can be also used to estimate the extreme quality of diffraction limited ghost images.
机译:考虑了验证Heisenberg不确定性原则的充分性,如Karl Popper提出并在实践中实施的实验。 与Einstein-Podolsky-Rosen悖论一样,使用缠绕的基本颗粒的量子特性。 在这种情况下,实际形成窄狭缝的Ghost图像。 实验结果乍一看,支持违反不确定性原则。 然而,分析狭缝鬼图像的空间分辨率表明这是不正确的。 在空间有限的光束的情况下,衍射对衍射的正确描述,不要违反不确定性原理。 结果也可用于估计衍射有限鬼图像的极端质量。

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