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Violation of the principle of Complementarity, and its implications

机译:违反互补原则及其含义

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Bohr's principle of complementarity predicts that in a welcher weg ("which-way") experiment, obtaining fully visible interference pattern should lead to the destruction of the path knowledge. Here I report a failure for this prediction in an optical interferometry experiment. Coherent laser light is passed through a dual pinhole and allowed to go through a converging lens, which forms well-resolved images of the respective pinholes, providing complete path knowledge. A series of thin wires are then placed at previously measured positions corresponding to the dark fringes of the interference pattern upstream of the lens. No reduction in the resolution and total radiant flux of either image is found in direct disagreement with the predictions of the principle of complementarity. In this paper, a critique of the current measurement theory is offered, and a novel nonperturbative technique for ensemble properties is introduced. Also, another version of this experiment without an imaging lens is suggested, and some of the implications of the violation of complementarity for another suggested experiment to investigate the nature of the photon and its "empty wave" is briefly discussed.
机译:玻尔的互补原理预测,在welcher weg(“单向”)实验中,获得完全可见的干涉图应会导致路径知识的破坏。在这里,我报告了光学干涉测量实验中此预测的失败。相干的激光穿过双针孔,然后通过会聚透镜,形成各个针孔的清晰图像,从而提供完整的路径知识。然后将一系列细线放置在先前测量的位置上,该位置对应于透镜上游干涉图案的深色条纹。没有发现任何图像分辨率和总辐射通量的降低都与互补原理的预测直接不同。在本文中,对当前的测量理论进行了批判,并介绍了一种新的整体性质的非摄动技术。此外,还建议了该实验的另一个版本,其中没有成像透镜,并且简要讨论了违反互补性的某些建议,该建议对另一个建议的研究光子及其“空波”性质的实验进行了讨论。

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