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Suppression of the intensity noise in a diode-pumped neodymium:YAG nonplanar ring laser

机译:二极管泵浦钕:YAG非平面环形激光器中强度噪声的抑制

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摘要

We investigate the intensity noise properties of a continuous-wave diode pumped Nd:YAG ring-laser system and present results for an active feedback loop that suppresses the relaxation oscillation noise. This system reduces the intensity noise to within 6.1 dB of the quantum noise equivalent level (which is at 1.5/spl times/10/sup -8///spl radic/Hz for 1.5 mA) for frequencies between 10 kHz to 300 kHz and to less than 1/spl times/10/sup -7///spl radic/Hz for frequencies between 300 Hz and 10 kHz. The technical properties of the optimized feedback system are presented. The theoretical limits of performance for the system are discussed and it is shown that the performance is within 3.1 dB of these limits. We also present data from an optical beat experiment demonstrating that the intensity control system does not introduce any new features into the frequency noise spectrum.
机译:我们研究了连续波二极管泵浦的Nd:YAG环形激光系统的强度噪声特性,并给出了抑制松弛振荡噪声的有源反馈环路的结果。对于10 kHz至300 kHz之间的频率,该系统可将强度噪声降低到量子噪声等效水平的6.1 dB以内(对于1.5 mA,其为1.5 / spl次/ 10 / sup -8 /// spl radic / Hz)(对于1.5mA)对于300 Hz至10 kHz之间的频率,应小于1 / spl次/ 10 / sup -7 /// spl radic / Hz。介绍了优化反馈系统的技术特性。讨论了系统性能的理论极限,结果表明该性能在这些极限的3.1 dB之内。我们还提供了来自光学拍实验的数据,这些数据表明强度控制系统不会在频率噪声频谱中引入任何新功能。

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