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Role of the retinal detector array in perceiving the superposition effects of light

机译:视网膜探测器阵列在感知光的角度

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The perception of light in nature comes through the photopigment molecules of our retina. The objective of this paper is to relate our modern understanding of the quantum mechanical chemical processes in the retinal molecules with our observation of superposition ("interference") fringes due to multiple light beams. The issue of "interference" is important for two subtle reasons. First, we do not perceive light except though the response of the light detecting molecules. Second, EM fields do not operate on each other to create the "interference" (superposition) effects. When the intrinsic molecular properties of a detector allows it to respond simultaneously to all the superposed light beams on them, they sum the effects and report the corresponding "fringes" of superposition. In the human eye the "seeing" (or perception) is initiated by photo-isomerization of retinal, the chromophore of the opsin molecule. There exists several orders of magnitude difference between the characteristic times for the molecular processes of light absorption and the visual signal generation through the photochemical cascade. This allows us to function in the daily chores of walking and visual identification of objects and enjoy the beauty of the natural sceneries even though the retinal layer is bombarded simultaneously by innumerable beams of light with same and different frequencies, which will normally produce a flood of electronic "white noise" over a very wide range of temporal frequencies, namely the heterodyne beat signal. How do the eyes completely suppress this wide range of heterodyne beat signal?
机译:自然界中光明的感知通过我们的视网膜的皮照分子。本文的目的是通过我们对多个光束引起的叠加(“干扰”)的观察来涉及视网膜分子中量子机械化学过程的现代理解。 “干扰”问题对于两种微妙的原因很重要。首先,除了光检测分子的响应之外,我们不会感知光。其次,EM字段不能互相操作以创建“干扰”(叠加)效果。当检测器的固有分子特性允许其同时响应它们上的所有叠加的光束时,它们总结效果并报告叠加的相应的“条纹”。在人眼中,通过视网膜的光异构化,Opsin分子的发色团引发“看到”(或感知)。通过光化学级联的光吸收和视觉信号产生的分子过程之间存在几个级别差异。这使我们能够在日常琐事中运作,即使通过相同频率和不同频率的无数光束同时轰击视网膜层,也享受自然风景的美丽,这通常会产生洪水电子“白噪声”在非常广泛的时间频率范围内,即外差拍信号。眼睛如何完全抑制这种广泛的外差击败信号?

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