Corwin K L, Lu Z T, Hand C F, Epstein R J, Wieman C E
JILA, University of Colorado and National Institute of Standards and Technology, Boulder, Colorado 80309-0440, USA.
Appl Opt. 1998 May 20;37(15):3295-8. doi: 10.1364/ao.37.003295.
We demonstrate a robust method of stabilizing a diode laser frequency to an atomic transition. This technique employs the Zeeman shift to generate an antisymmetric signal about a Doppler-broadened atomic resonance, and therefore offers a large recapture range as well as high stability. The frequency of a 780-nm diode laser, stabilized to such a signal in Rb, drifted less than 0.5 MHz peak-peak (1 part in 10(9)) in 38 h. This tunable frequency lock can be constructed inexpensively, requires little laser power, rarely loses lock, and can be extended to other wavelengths by use of different atomic species.
我们展示了一种将二极管激光频率稳定到原子跃迁的可靠方法。该技术利用塞曼频移在多普勒加宽的原子共振附近产生一个反对称信号,因此具有较大的重新捕获范围和高稳定性。一台780纳米的二极管激光器,其频率稳定到铷中的这样一个信号,在38小时内峰峰值漂移小于0.5兆赫兹(10的9次方分之一)。这种可调谐频率锁定装置成本低廉,所需激光功率小,很少失锁,并且通过使用不同的原子种类可扩展到其他波长。