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Classical Interpretation of Ultra-Low Intensity Optical Heterodyning as a Pragmatic Approach to Photon Size Determination

机译:超低强度光学杂交的经典解释作为光子尺寸测定的务实方法

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The experimental results on heterodyning the light beams of small intensity ("single photon" level) are presented. It is shown that the semi-classical theory of photon as the wave packet is the most suitable for the interpretation of "single photon" experiments, if only the value of length of photon would be corrected according to our proposal. A study of the statistics of photon distribution during heterodyning of two laser beams shifted in frequency made it possible to experimentally estimate the length of photon. It is shown that photon represents the wave packet of needle-shaped form with spatial length determined by the coherence length of the light radiation and substantially exceeds the wavelength λ. The pulse duration on the output of photomultiplier (PM), originated from single photon, is determined only by processes in the PM and does not refer to the length of photon. It enables the interpretation of obtained results with regard to the well-recognized principles of physics.
机译:呈现了小强度的光束的实验结果(“单光子”级)。结果表明,作为波浪包的光子的半经典理论是最适合于解释“单光子”实验的解释,如果仅根据我们的建议将校正光子长度的值。在频率偏移的两个激光束的外差期间的光子分布统计研究使得可以通过实验估计光子的长度。结果表明,光子表示针状形状的波包,其空间长度由光辐射的相干长度确定并且基本上超过波长λ。源自单光子的光电倍增器(PM)输出的脉冲持续时间仅通过PM的过程确定,并且不指的是光子的长度。它能够解释关于识别公认的物理原则的获得结果。

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