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The GRA beam-splitter experiments and particle-wave duality of light

机译:GRA分束器实验与光的粒子波对偶

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Grangier, Roger and Aspect (GRA) performed a beam-splitter experiment to demonstrate the particle behaviour of light and a Mach-Zehnder interferometer experiment to demonstrate the wave behaviour of light. The distinguishing feature of these experiments is the use of a gating system to produce near ideal single-photon states. With the demonstration of both wave and particle behaviour (in two mutually exclusive experiments) they claim to have demonstrated the dual particle - wave behaviour of light and hence to have confirmed Bohr's principle of complementarity. The demonstration of the wave behaviour of light is not in dispute. But we want to demonstrate, contrary to the claims of GRA, that their beam-splitter experiment does not conclusively confirm the particle behaviour of light, and hence does not confirm particle wave duality, nor, more generally, does it confirm complementarity. Our demonstration consists of providing a detailed model based on the causal interpretation of quantum fields (CIEM), which does not involve the particle concept, of GRA's which-path experiment. We will also give a brief outline of a CIEM model for the second, interference, GRA experiment.
机译:Grangier,Roger和Aspect(GRA)进行了分束器实验以证明光的粒子特性,并进行了Mach-Zehnder干涉仪实验以证明光的波特性。这些实验的显着特征是使用门控系统产生接近理想的单光子态。通过证明波和粒子的行为(在两个互斥的实验中),他们声称已经证明了光的双重粒子-波行为,因此证实了玻尔的互补原理。光的波行为的论证没有争议。但是,我们要证明,与GRA的说法相反,他们的分束器实验不能最终确认光的粒子行为,因此无法确认粒子波对偶性,也不能更普遍地确认互补性。我们的演示包括提供一个基于量子场因果解释(CIEM)的详细模型,该模型不涉及GRA的单径实验的粒子概念。我们还将简要介绍第二个干扰GRA实验的CIEM模型。

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