Ghadimi Moji, Bridge Elizabeth M, Scarabel Jordan, Connell Steven, Shimizu Kenji, Streed Erik, Lobino Mirko
Appl Opt. 2020 Jun 10;59(17):5136-5141. doi: 10.1364/AO.390881.
Here we present a cost-effective multichannel optomechanical switch and software proportional-integral-derivative (PID) controller system for locking multiple lasers to a single-channel commercial wavemeter. The switch is based on a rotating cylinder that selectively transmits one laser beam at a time to the wavemeter. The wavelength is read by the computer, and an error signal is output to the lasers to correct wavelength drifts every millisecond. We use this system to stabilize 740 nm (subsequently frequency doubled to 370 nm), 399 nm, and 935 nm lasers for trapping and cooling different isotopes of a ion. We characterize the frequency stability of the three lasers by using a second, more precise, commercial wavemeter. We also characterize the absolute frequency stability of the 740 nm laser using the fluorescence drift rate of a trapped ion. For the 740 nm laser we demonstrate an Allan deviation of 3×10 (at 20 s integration time), equivalent to sub-200 kHz stability.
在此,我们展示了一种经济高效的多通道光机械开关和软件比例积分微分(PID)控制器系统,用于将多台激光器锁定到单通道商用波长计上。该开关基于一个旋转圆柱体,它每次选择性地将一束激光传输到波长计。波长由计算机读取,并且每毫秒输出一个误差信号到激光器以校正波长漂移。我们使用该系统来稳定740纳米(随后倍频至370纳米)、399纳米和935纳米的激光器,用于捕获和冷却一种离子的不同同位素。我们使用第二台更精确的商用波长计来表征这三台激光器的频率稳定性。我们还利用被俘获离子的荧光漂移率来表征740纳米激光器的绝对频率稳定性。对于740纳米激光器,我们展示了在20秒积分时间下的阿伦偏差为3×10⁻⁹,相当于低于200千赫兹的稳定性。