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本工作中,使用了一个概率型的计算机模型来模拟颗粒随机分布的照相乳剂层、曝光时颗粒中的潜影生成以及显影后的颗粒度测量。用统计回归分析的方法,对颗粒随机分布产生的照相颗粒度和乳剂层在可见光和单光子激活射线曝光以后产生的照相颗粒度进行了比较,最后得出这样的结论:在照相过程的每一个阶段,如果乳剂层中的每一个颗粒都独立地参与各种反应,与邻近颗粒不存在任何相关性的话,则光子噪声对照相颗粒度没有任何明显的影响。
In this work, a probabilistic computer model was used to simulate the random distribution of the photographic emulsion layer of particles, the generation of latent images in the particles upon exposure, and the particle size measurement after development. By means of statistical regression analysis, the particle size of the particles generated by random distribution of the particles and the particle size of the emulsion produced after exposure to visible light and single-photon activation radiation are compared. Finally, it is concluded that in each of the photographic processes Stage, photonic noise has no significant effect on the particle size of the photographic phase if each particle in the emulsion layer is independently involved in the various reactions without any correlation with neighboring particles.