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Single actuator alignment control for improved frequency stability of a cavity-based optical frequency reference

机译:单执行器对准控制可提高基于腔的光学频率参考的频率稳定性

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摘要

We demonstrate a method of controlling the alignment of a laser beam to a Fabry-Perot resonator through synchronous detection of the misalignment arising from modulating the orientation of a single beam-steering mirror. The horizontal and vertical tilt of the mirror are modulated in quadrature to drive a circular motion of the beam orientation. A corresponding modulation of the intensity of the optical field circulating in the cavity is measured at either the reflected or transmitted port and demodulated synchronously to derive two error signals to indicate the vertical and horizontal misalignment. These signals are fed back to the beam-steering mirror to suppress fluctuations below 30 Hz. This method avoids the complexity of monitoring off-axis cavity modes and is particularly effective in the case where unwanted pointing fluctuations are introduced by one or two elements in the optical setup. We have applied the technique to two Fabry-Perot resonators in use as precision frequency references, delivering a result of 10 dB suppression of alignment fluctuations at 1 Hz and an improvement in frequency stability by up to a factor of 4. (c) 2008 Optical Society of America.
机译:我们演示了一种通过同步检测由于调制单个光束转向镜的方向而引起的未对准来控制激光束对准Fabry-Perot谐振器的方法。反射镜的水平和垂直倾斜度均经过正交调制,以驱动光束方向的圆周运动。在反射或透射端口处测量腔中循环的光场强度的相应调制,并对其进行同步解调,以得出两个误差信号以指示垂直和水平未对准。这些信号被反馈到光束转向镜以抑制30 Hz以下的波动。该方法避免了监视离轴腔模式的复杂性,并且在光学装置中一个或两个元件引入不需要的指向波动的情况下特别有效。我们已经将该技术应用于两个用作精密频率基准的Fabry-Perot谐振器,从而在10 Hz时抑制了10 dB的对准波动,并且将频率稳定性提高了4倍。(c)2008 Optical美国学会。

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