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Theoretical Evaluation of Spectral Power Distributions of Radiant Energy from Microcavities

机译:微腔辐射能谱功率分布的理论评估

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References(4) Cited-By(2) Characteristics of radiation from microcavities are investigated to verify the luminous efficacy of microcavity radiator that was estimated by John F. Waymouth in 1989. Electromagnetic waves in a rectangular microcavity and a cylindrical microcavity were analyzed based on the waveguide theory. The modes of electromagnetic waves in the microcavities are analyzed using a normalized eigenfunction. The conductivity and permittivity of metals are obtained by analyzing the motion equation of the free electron in the metals. The skin depth of tungsten is estimated with the emissivity of tungsten based on electromagnetic theory. Accordingly it is estimated that the luminous efficacy of radiation from the microcavity is expected to reach 118 lm/W.
机译:参考文献(4)引用了(2)对微腔辐射的特性进行了研究,以验证John F. Waymouth在1989年估算的微腔辐射器的发光效率。基于此,分析了矩形微腔和圆柱形微腔中的电磁波波导理论。使用归一化本征函数分析微腔中的电磁波模式。通过分析金属中自由电子的运动方程式可以得出金属的电导率和介电常数。基于电磁理论,利用钨的发射率估算钨的趋肤深度。因此,据估计来自微腔的辐射的发光效率有望达到118 lm / W。

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