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Photon-material interaction based on single silt diffraction

机译:基于单缝衍射的光子-材料相互作用

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Heisenberg's uncertainty principle explains single slit diffraction where maximum is always at the centre. The same experiment has been conducted but with transparent walls i.e. the material present on either side of the slit, instead of opaque material. The observed result is a minimum at the centre in between two maximum. It is intuitive that atleast some photons passed through the slit must end up at the centre of the diffraction pattern but the result is different. The diffraction pattern occurs as the photons interact with the material around the slit. While uncertainty principle cannot give quantitative explanation as the photons confined in gap between slits still occupy the same space whether it is passing through a slit or not. This paper discusses various experiments and results by examining the interactions between photons and the material of the wall which makes the slit for better understanding of properties of light.
机译:海森堡的不确定性原理解释了单缝衍射,其中最大值始终在中心。已经进行了相同的实验,但是具有透明的壁,即在狭缝的任一侧存在的材料,而不是不透明的材料。观察到的结果是中间的最小值,介于两个最大值之间。直观地讲,至少有一些通过狭缝的光子必须终止在衍射图样的中心,但结果却不同。当光子与狭缝周围的材料相互作用时,发生衍射图样。虽然不确定性原理不能给出定量的解释,因为限制在缝隙之间的光子无论是否通过缝隙仍占据相同的空间。本文通过检查光子与壁材料之间的相互作用来讨论各种实验和结果,该材料形成了狭缝,以更好地了解光的性质。

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