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Mechanism of Far Infrared Emission from Mineral Tourmaline Fine Powders

机译:远红外线排放的机制来自矿物林林林细粉

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The little disturbance theory in quantum mechanics was used to research the frequency and the high emissivity of far infrared emission from natural black tourmaline on basis of the electric dipole model. Comparing the theoritical and the experimental value of the frequency we found that they are in match case. So we testified that the tourmaline partical is really composed of lots of crystal electric dipole. At the same time we explained the curves of infrared absorption analysis of natural black tourmalines at room temperature are simillar despite of their diversification in chemistry component and producing area, and they have high infrared emissivity from the theory point of view. Finally we pointed out the condition under which the high infrared emissivity of tourmaline can be obtained theoritically.
机译:量子力学中的小扰动理论用于研究电偶极电孔模型的自然黑色电粉的远红外发射的频率和高发射率。比较理论和实验价值的频率,我们发现它们在匹配案例中。因此,我们证明了电气石局部实际上由大量的水晶电偶极子组成。同时,尽管化学成分和生产区域的多样化,但在室温下,我们解释了在室温下的自然黑色林林碱的红外吸收分析曲线,它们具有高度的红外发射率,从理论的角度来看。最后,我们指出了理论上可以获得高红外线率的高红外发射率的条件。

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