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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Identification and Control of a Grating-Stabilized External-Cavity Diode Laser
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Identification and Control of a Grating-Stabilized External-Cavity Diode Laser

机译:光栅稳定的外腔二极管激光器的识别和控制

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摘要

Diode lasers have many useful properties and have found a variety of uses including CD and DVD players, barcode scanners, laser surgery, water purification, quantum-key cryptography, spectroscopic sensing, etc. Nevertheless, their intrinsic linewidth or the precision of their emitted wavelengths, is not good enough for many cutting-edge applications such as atomic interferometry or high-performance atomic clocks. Using active feedback control, we can narrow the linewidth of a diode laser by not allowing the frequency of emitted light to drift away from a reference value. Nevertheless, such feedback designs are challenging because of a lack of first principles models and difficult sensor dynamics. This brief describes our diode laser system and reports our results identifying the system using black-box techniques, validating the empirical models, and designing controllers to achieve desired performance while preserving stability and satisfying implementation constraints.
机译:二极管激光器具有许多有用的特性,并已发现多种用途,包括CD和DVD播放器,条形码扫描仪,激光手术,水净化,量子密钥密码术,光谱传感等。然而,它们的固有线宽或发射波长的精度,对于许多尖端应用(例如原子干涉测量法或高性能原子钟)而言,还不够好。使用主动反馈控制,我们可以通过不允许发射光的频率偏离参考值来缩小二极管激光器的线宽。然而,由于缺乏第一性原理模型和困难的传感器动力学,这种反馈设计具有挑战性。本简介描述了我们的二极管激光器系统,并报告了使用黑盒技术识别系统,验证经验模型以及设计控制器以实现所需性能,同时保持稳定性和满足实施约束的结果。

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