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Observation of thermal effects due to an optical incident signal and high fluence on InGaAs/InP multiple-quantum-well saturable absorber nonlinear mirrors: evolution of characteristics and time constants

机译:观察由于光学入射信号和InGaAs / InP多量子阱可饱和吸收器非线性反射镜上的高通量引起的热效应:特性和时间常数的演变

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We observe the effects of a temperature increase on the characteristics of an InGaAs/InP multiple-quantum-well (MQW) saturable absorber (SA) in a microcavity provided by an optical input signal under normal incidence. The temperature increase on the nonlinear mirror (NLM) due to an optical signal depends on the energy time filling factor (FF) of this input signal (analogous to the signal's duty cycle, which is the ratio between the repetition period and the pulse duration) and hence depends on the repetition rate of the signal for a given pulse time width. This increase in temperature is mostly responsible for a shift in the reflectivity spectrum of the device toward higher wavelengths. In this experimental study, we show the shift of the resonance cavity versus the optical input power at high FF, and we evaluate the thermal time constant of an Fe-doped InGaAs/InP MQW NLM. Finally, we report the consequences of such thermal effects and high fluence on the reflectivity and contrast of two different InGaAs/InP NLMs when the input signal FF rises up to 25percent, which gets close to telecommunication transmission conditions.
机译:我们观察到温度升高对法向入射光输入信号提供的微腔中InGaAs / InP多量子阱(MQW)饱和吸收体(SA)特性的影响。由于光信号导致的非线性反射镜(NLM)上的温度升高取决于该输入信号的能量时间填充因子(FF)(类似于信号的占空比,即重复周期与脉冲持续时间之间的比率)因此取决于给定脉冲时间宽度的信号重复率。温度的升高主要是导致设备的反射光谱向更高波长的偏移。在此实验研究中,我们显示了在高FF时谐振腔相对于光输入功率的偏移,并评估了掺Fe的InGaAs / InP MQW NLM的热时间常数。最后,我们报告了当输入信号FF上升到25%(接近电信传输条件)时,这种热效应和高通量对两种不同InGaAs / InP NLM的反射率和对比度的影响。

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