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An Improved Model to Predict the Temperature Dependence of Refractive Index of InP-based Compounds

机译:一种改进的模型,以预测基于INP基化合物折射率的温度依赖性

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摘要

Temperature variation affects the refractive index of the material constitute an integrated optical loss which in turn, impacts the optical properties of the photonic device. After extensive literature survey, it is found that there is no accurate physical model available to calculate the variation of refractive index due to the change in temperature for InP/InGaAsP material except Weber's model, which is an extension of Adachi's Model. In this paper, it is demonstrated that the available models are not in good agreement with experimental data available in literature. Furthermore, an extension of modified single oscillator model is proposed which can be used to calculate the thermo-optic coefficient of InP/InGaAsP material.
机译:温度变化影响材料的折射率构成集成光学损耗,反过来影响光子器件的光学性质。 在广泛的文献调查之后,发现由于Weber的模型除了用于INP / InGaAsP材料的温度变化,没有可用于计算折射率的变化,这些物理模型可用于计算韦伯的模型,这是Adachi模型的延伸。 在本文中,证明可用模型与文献中可用的实验数据不一致。 此外,提出了改进的单振荡器模型的延伸,该模型可用于计算INP / InGaAsp材料的热视光系数。

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