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Human Visual System as a Double-Slit Single Photon Interference Sensor: A Comparison between Modellistic and Biophysical Tests

机译:人类视觉系统作为双狭缝单光子干涉传感器:模型测试与生物物理测试之间的比较

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摘要

This paper describes a computational approach to the theoretical problems involved in the Young's single-photon double-slit experiment, focusing on a simulation of this experiment in the absence of measuring devices. Specifically, the human visual system is used in place of a photomultiplier or similar apparatus. Beginning with the assumption that the human eye perceives light in the presence of very few photons, we measure human eye performance as a sensor in a double-slit one-photon-at-a-time experimental setup. To interpret the results, we implement a simulation algorithm and compare its results with those of human subjects under identical experimental conditions. In order to evaluate the perceptive parameters exactly, which vary depending on the light conditions and on the subject’s sensitivity, we first review the existing literature on the biophysics of the human eye in the presence of a dim light source, and then use the known values of the experimental variables to set the parameters of the computational simulation. The results of the simulation and their comparison with the experiment involving human subjects are reported and discussed. It is found that, while the computer simulation indicates that the human eye has the capacity to detect the corpuscular nature of photons under these conditions, this was not observed in practice. The possible reasons for the difference between theoretical prediction and experimental results are discussed.
机译:本文介绍了一种针对杨氏单光子双缝实验中涉及的理论问题的计算方法,重点是在没有测量装置的情况下对该实验的模拟。具体地,人类视觉系统代替光电倍增管或类似设备被使用。从假设人眼在很少的光子存在下感知光开始,我们在一次双缝单光子实验装置中测量人眼作为传感器的性能。为了解释结果,我们实现了一种模拟算法,并将其结果与相同实验条件下的人类对象进行比较。为了准确地评估感知参数,这些感知参数根据光线条件和对象的敏感度而变化,我们首先回顾存在暗光光源下关于人眼生物物理学的现有文献,然后使用已知值实验变量的设置以设置计算仿真的参数。报告并讨论了模拟结果以及与涉及人类受试者的实验的比较结果。已经发现,尽管计算机仿真表明人眼具有在这些条件下检测光子的微粒性质的能力,但实际上并未观察到。讨论了理论预测与实验结果差异的可能原因。

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