Repetition Frequency Control of a Mid-Infrared Ultrashort Pulse Laser

IF 0.9 Q4 AUTOMATION & CONTROL SYSTEMS International Journal of Automation Technology Pub Date : 2024-01-05 DOI:10.20965/ijat.2024.p0084
H. Matsukuma, M. Nagaoka, Hisashi Hirose, R. Sato, Y. Shimizu, Wei Gao
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Abstract

In this study, a method for controlling the repetition frequency of a mid-infrared ultrashort pulse laser with a central wavelength of 2.8 µm is developed. A ring cavity that is insensitive to the polarization state of the laser light emitted from the fiber end was constructed to stabilize the oscillation of the mid-infrared ultrashort pulse laser. More oscillation conditions for the ultrashort pulse laser based on nonlinear polarization rotation are found than the conventional method. To confirm that the pulse oscillation is mode-locked, ultrashort pulse oscillation was confirmed by an autocorrelator. The pulse repetition frequency of this robust ultrashort pulse laser was controlled. The control method was based on the phase-locked loop (PLL) control. A wedge window was inserted into the cavity and mounted on a linear stage driven by a piezoelectric transducer. By driving the piezoelectric transducer, the position of the wedge window changed, and the resulting optical path length also changed. The repetition frequency was controlled based on this principle. Optical path length control by the wedge window and temperature control provides an Allan deviation of approximately 1 mHz.
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中红外超短脉冲激光器的重复频率控制
本研究开发了一种控制中心波长为 2.8 µm 的中红外超短脉冲激光器重复频率的方法。为了稳定中红外超短脉冲激光器的振荡,构建了一个对光纤端发射的激光偏振态不敏感的环形腔。与传统方法相比,基于非线性偏振旋转的超短脉冲激光器找到了更多的振荡条件。为了确认脉冲振荡是模式锁定的,超短脉冲振荡由自相关器确认。这种鲁棒超短脉冲激光器的脉冲重复频率是可控的。控制方法基于锁相环(PLL)控制。将一个楔形窗口插入腔体,并安装在由压电传感器驱动的线性平台上。通过驱动压电传感器,楔形窗口的位置发生变化,由此产生的光路长度也随之变化。重复频率就是根据这一原理控制的。通过楔形窗口和温度控制来控制光路长度,可实现约 1 mHz 的阿伦偏差。
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来源期刊
International Journal of Automation Technology
International Journal of Automation Technology AUTOMATION & CONTROL SYSTEMS-
CiteScore
2.10
自引率
36.40%
发文量
96
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