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首页> 外文期刊>IEEE Journal of Quantum Electronics >Frequency-stabilized mode-locked solid-state laser system for precision range-Doppler imaging
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Frequency-stabilized mode-locked solid-state laser system for precision range-Doppler imaging

机译:用于精确范围多普勒成像的稳频锁模固态激光系统

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We report measurements which show that an actively stabilized cw mode-locked Nd:YLF laser, in combination with a flashlamp-pumped Nd:glass amplifier, can achieve better than 1 cm resolution of distant rotating targets using range-Doppler imaging. To do this, we have produced trains of 50 ps mode-locked pulses with less than 25 kHz peak-to-peak optical frequency broadening and jitter of the laser modes. This frequency stability is achieved by active control of the oscillator cavity length using an external cavity as a reference. Cavity length stabilization can also reduce mode-locked laser timing jitter if the jitter is caused by cavity optical path length changes common to all laser modes. In our laser, however, the active optical-frequency-stabilization did not significantly improve laser pulse timing stability from the approximate 2-ps jitter levels achieved in our passively stabilized cavity. Analysis of the data indicates that a significant fraction of the timing jitter was due to laser cavity path length changes that varied from mode to mode.
机译:我们报告的测量结果表明,主动稳定的连续波锁模Nd:YLF激光器与闪光灯泵浦的Nd:玻璃放大器结合使用距离多普勒成像技术可以实现优于1 cm的远距离旋转目标分辨率。为此,我们生产了50 ps锁模脉冲序列,并具有小于25 kHz的峰峰值光学频率展宽和激光模式抖动。该频率稳定性是通过以外部腔体为基准,主动控制振荡器腔体长度来实现的。如果抖动是由所有激光器模式共有的谐振腔光路长度变化引起的,则腔长稳定化还可减少锁模激光定时抖动。然而,在我们的激光器中,有源光频率稳定化并没有从被动稳定化腔中实现的大约2ps抖动水平显着提高激光脉冲的时序稳定性。数据分析表明,时序抖动的很大一部分是由于激光腔路径长度的变化随模式而变化。

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