光电效应实验中产生的电流与光源距离的关系

U. Fitri, E. Budi, H. Nasbey, M. Ziveria, I. Muhara
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引用次数: 0

摘要

在普朗克常数装置上对所产生的电流与光源距离的关系进行实验观察,可以显示出所产生的电流与光源距离变化的对比。实验设备规格采用普朗克常数实验装置,12v/35w卤钨灯,输出15v,精度+-0.2%,功率要求220V,熔断器额定0.5A,红色滤波器。利用光电效应现象的概念进行实验,首先用恒定的光子光照射金属材料,然后光线通过波长为635 nm的红色滤光片。滤光片的使用是通过在通往金属材料的光传播路径上放置一个635纳米的滤光片来完成的,这样通过滤光片的光就只有波长为635纳米的光。之所以选择红色滤光片,是因为波长为635纳米的光的频率可以使光子撞击金属中的电子,从而使电子从金属中出来。金属材料受到光子光照射后,金属上的电子电荷会受到干扰而从金属中出来。这些电子的运动产生一种电流,其值可以被看到。通过对18、20、22、24、26、28、30 cm的距离进行测试,得到的电流值为0.528;0.382;0.295;0.232;0.182和0.154。从这些实验中可以看出,光源越远,由光产生的电流越小。这是因为距离光源越近,击中金属的光强度越大,这导致更多的光子击中金属。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE CORRELATION BETWEEN ELECTRIC CURRENT PRODUCED AND THE LIGHT SOURCE DISTANCE IN PHOTOELECTRIC EFFECT EXPERIMENTS
In experimental observations of the relationship between the electric current generated and the distance of the light source on the Planck constant device, it can show a comparison between the electric current generated and the variable distance of the light source. The experimental equipment specifications use the Planck constant experimental set with a 12v/35w tungsten halogen lamp, output 15v, accuracy +-0.2%, power requirement 220V, fuse rating 0.5A and red filter. Experiments using the concept of the photoelectric effect phenomenon begin by irradiating metal materials with constant photon light and then the light passes through a red light filter with a wavelength of 635 nm. The use of a filter is done by placing a 635 nm light filter on the light propagation path to the metal material, so that the light that passes through the filter is only light with a wavelength of 635 nm. The choice of the red filter is due to the fact that the frequency of light with a wavelength of 635 nm can cause electrons to come out of the metal as a result of photons hitting electrons in the metal. After the metal material is irradiated with photon light, the electron charges on the metal will be disturbed and come out of the metal. The movement of these electrons produces an electric current whose value can be seen. By testing distances of 18, 20, 22, 24, 26, 28, and 30 cm, the results of a current value of 0.528 are obtained; 0.382; 0.295; 0.232; 0.182 and 0.154. From these experiments it was shown that the further away the light source, the smaller the electric current generated due to the light. This is because the closer the distance to the light source, the more light intensity hitting the metal, this results in a greater number of photons hitting the metal.
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