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Study of QCL Laser Sources for the Realization of Advanced Sensors

机译:实现高级传感器的QCL激光源的研究

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We study the nonlinear dynamics of a quantum cascade laser (QCL) with a strong reinjection provided by the feedback from two external targets in a double cavity configuration. The nonlinear coupling of interferometric signals from the two targets allows us to propose a displacement sensor with nanometric resolution. The system exploits the ultra-stability of QCLs in self-mixing configuration to access the intrinsic nonlinearity of the laser, described by the Lang–Kobayashi model, and it relies on a stroboscopic-like effect in the voltage signal registered at the QCL terminals that relates the “slow” target motion to the “fast” target one.
机译:我们研究了双腔配置中来自两个外部目标的反馈提供的强注入的量子级联激光器(QCL)的非线性动力学。来自两个目标的干涉信号的非线性耦合使我们能够提出具有纳米分辨率的位移传感器。该系统利用自混合配置中的QCL的超稳定性来访问激光器的固有非线性(由Lang–Kobayashi模型描述),并且它依赖于频闪效应,在QCL端子处记录的电压信号中,将“慢速”目标运动与“快速”目标运动联系起来。

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