Koch Peter, Ruebel Felix, Bartschke Juergen, L'huillier Johannes A
Appl Opt. 2015 Nov 20;54(33):9954-9. doi: 10.1364/AO.54.009954.
We demonstrate a continuous wave single-frequency laser at 671.1 nm based on a high-power 888 nm pumped Nd:YVO4 ring laser at 1342.2 nm. Unidirectional operation of the fundamental ring laser is achieved with the injection-locking technique. A Nd:YVO4 microchip laser serves as the injecting seed source, providing a tunable single-frequency power of up to 40 mW. The ring laser emits a single-frequency power of 17.2 W with a Gaussian beam profile and a beam propagation factor of M2<1.1. A 60-mm-long periodically poled MgO-doped LiNbO3 crystal is used to generate the second harmonic in a single-pass scheme. Up to 5.7 W at 671.1 nm with a Gaussian shaped beam profile and a beam propagation factor of M2<1.2 are obtained, which is approximately twice the power of previously reported lasers. This work opens possibilities in cold atoms experiments with lithium, allowing the use of larger ensembles in magneto-optical traps or higher diffraction orders in atomic beam interferometers.
我们展示了一种基于高功率888nm泵浦的1342.2nm Nd:YVO4环形激光器的671.1nm连续波单频激光器。利用注入锁定技术实现了基模环形激光器的单向运转。一个Nd:YVO4微芯片激光器用作注入种子源,可提供高达40mW的可调谐单频功率。该环形激光器发射出功率为17.2W的单频光,具有高斯光束轮廓且光束传输因子M2<1.1。采用一块60mm长的周期性极化掺氧化镁铌酸锂晶体,以单程方式产生二次谐波。在671.1nm处获得了高达5.7W的功率,光束轮廓为高斯形状且光束传输因子M2<1.2,这大约是先前报道激光器功率的两倍。这项工作为锂的冷原子实验开辟了可能性,允许在磁光阱中使用更大的原子系综或在原子束干涉仪中使用更高的衍射级次。