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Optically self-locked semiconductor laser with servo control for feedback phase and laser current

机译:具有伺服控制的光学自锁半导体激光器,用于反馈相位和激光电流

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摘要

The operating current of a semiconductor laser optically locked to a high-finesse reference cavity can be controlled using a second-harmonic lock-in technique. The authors present theoretical calculations for this novel servo scheme. For stabilization and noise reduction of semiconductor lasers, the optical lock to a high-finesse cavity with a feedback phase servo has become a standard technique. An additional servo for the laser current is desirable for combining good tuning capability and high spectral purity. It is demonstrated that such a servo can easily be established with no changes in the optical setup. The practical applicability of this technique has been demonstrated in a setup with a 780-mm laser diode.
机译:可以使用二次谐波锁定技术来控制光学锁定在高端参考腔上的半导体激光器的工作电流。作者介绍了这种新型伺服方案的理论计算。为了稳定和降低半导体激光器的噪声,通过反馈相位伺服器将光锁定到高级腔的技术已成为标准技术。为了结合良好的调谐能力和高光谱纯度,需要用于激光电流的附加伺服器。已经证明,可以在不改变光学设置的情况下容易地建立这种伺服系统。该技术的实际适用性已在780毫米激光二极管的设置中得到了证明。

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