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Nonlinear thermo-optic model for the characterization of optical self-heating in electro-optic semiconductors

机译:非线性热光模型,用于表征电光半导体中的光学自热

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摘要

A nonlinear thermo-optic model for the characterization of electro-optic semiconductor probes used to simultaneously measure electric field and temperature is presented. Optical thermal self-heating of the semiconductor is shown to be the primary limiting mechanism for temperature dynamic range, electro-optic modulation power, temperature sensitivity, temperature contrast, and temperature invasiveness. Tradeoff considerations of these parameters as a function of optical wavelength and input optical power are discussed. Optical temporal defocusing is shown to minimize the effects of nonlinear absorption. Simulation results are compared with measurements.
机译:提出了用于表征同时测量电场和温度的电光半导体探针的非线性热光模型。半导体的光热自加热被证明是温度动态范围,电光调制功率,温度灵敏度,温度对比度和温度侵入性的主要限制机制。讨论了这些参数作为光波长和输入光功率的折衷考虑。示出了光学时间散焦以最小化非线性吸收的影响。仿真结果与测量结果进行比较。

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