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Monolithically Integrated Mid-Infrared Quantum Cascade Laser and Detector

机译:单片集成中红外量子级联激光器和检测器

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摘要

We demonstrate the monolithic integration of a mid-infrared laser and detector utilizing a bi-functional quantum cascade active region. When biased, this active region provides optical gain, while it can be used as a detector at zero bias. With our novel approach we can measure the light intensity of the laser on the same chip without the need of external lenses or detectors. Based on a bound-to-continuum design, the bi-functional active region has an inherent broad electro-luminescence spectrum of 200 cm−1, which indicate sits use for single mode laser arrays. We have measured a peak signal of 191.5 mV at theon-chip detector, without any amplification. The room-temperature pulsed emission with an averaged power consumption of 4 mW and the high-speed detection makes these devices ideal for low-power sensors. The combination of the on-chip detection functionality, the broad emission spectrum and the low average power consumption indicates the potential of our bi-functional quantum cascade structures to build a mid-infrared lab-on-a-chip based on quantum cascade laser technology.
机译:我们演示了利用双功能量子级联有源区的中红外激光器和检测器的单片集成。偏置时,该有源区可提供光学增益,同时可用作零偏置时的检测器。通过我们的新颖方法,我们可以测量同一芯片上激光器的光强度,而无需外部透镜或检测器。基于边界连续设计,双功能有源区具有200 cm -1 固有的宽电致发光光谱,这表明可用于单模激光阵列。我们在片上检测器上测得的峰值信号为191.5 mV,没有任何放大。室温下的脉冲发射平均功耗为4 mW,并且具有高速检测功能,因此这些器件非常适合低功耗传感器。片上检测功能,较宽的发射光谱和较低的平均功耗相结合,表明我们的双功能量子级联结构有潜力在量子级联激光技术的基础上构建中红外芯片实验室。

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