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Reaching 100 ppm/K output intensity temperature stability with single-color light-emitting diodes

机译:单色发光二极管达到<100 ppm / K的输出强度温度稳定性

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摘要

Optical sources with highly temperature-stable output intensity and low power consumption are desired in portable devices for metrology, and in medical applications, communications, and illumination. This paper introduces and demonstrates an optical stabilization scheme that uses the drift in peak-emission wavelength of light emitted from an LED as a temperature feedback signal to realize output intensity temperature coefficients below 100 ppm/K. The control principle relies on a conventional feedback loop but with a specially designed weakly polarizing optical interference coating that exhibits different transmittivity/reflectivity ratio dependence on wavelength for two different polarizations and by using a weighted sum of two polarizations as the output power correcting signal in a feedback loop. The method does not need a thermometer or temperature control stage, and its calibration can be performed electronically, adding to the simplicity of the design and making it also suitable for portable and battery-operated instruments. (C) 2016 Optical Society of America
机译:在用于计量的便携式设备中以及在医疗应用,通信和照明中,期望具有高温度稳定的输出强度和低功耗的光源。本文介绍并演示了一种光学稳定方案,该方案利用LED发出的光的峰值发射波长的漂移作为温度反馈信号,以实现低于100 ppm / K的输出强度温度系数。该控制原理依赖于常规的反馈环路,但具有经过特殊设计的弱偏振光学干涉涂层,对于两种不同的偏振,通过将两种偏振的加权和用作输出功率校正信号,该涂层表现出不同的透射率/反射率对波长的依赖性。反馈回路。该方法不需要温度计或温度控制台,并且可以通过电子方式进行校准,这不仅简化了设计,而且还适用于便携式和电池供电的仪器。 (C)2016美国眼镜学会

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