Burkley Z, Brandt A D, Rasor C, Cooper S F, Yost D C
Appl Opt. 2019 Mar 1;58(7):1657-1661. doi: 10.1364/AO.58.001657.
We demonstrate a 1.4 W continuous-wave (CW) laser at 243.1 nm. The radiation is generated through frequency quadrupling the output of a ytterbium-doped fiber amplifier system. which produces >10 W of CW power at 972.5 nm. We demonstrate absolute frequency control by locking the laser to an optical frequency comb and exciting the 1S-2S transition in atomic hydrogen. This frequency-stabilized, high-power deep-UV laser is of significant interest for precision spectroscopy of simple and exotic atoms, two-photon laser cooling of hydrogen, and Raman spectroscopy.
我们展示了一台波长为243.1nm的1.4W连续波(CW)激光器。该辐射是通过对掺镱光纤放大器系统的输出进行四倍频产生的,该系统在972.5nm处产生大于10W的连续波功率。我们通过将激光器锁定到光学频率梳并激发氢原子中的1S-2S跃迁来实现绝对频率控制。这种频率稳定的高功率深紫外激光器对于简单原子和奇异原子的精密光谱学、氢的双光子激光冷却以及拉曼光谱学具有重要意义。