Georgiev D, Gapontsev V P, Dronov A G, Vyatkin M Y, Rulkov A B, Popov S V, Taylor J R
Opt Express. 2005 Sep 5;13(18):6772-6. doi: 10.1364/opex.13.006772.
A single-mode, linearly polarized, 1118 nm ytterbium fiber laser was applied to pumping of a short fiber length, polarization-maintaining Raman cavity, resulting in a 0.4 nm linewidth, 23 W CW source at 1179 nm. Efficient, single-pass frequency doubling of the Raman source in MgO doped PPLN to 589 nm was demonstrated with CW power levels in excess of 3 W. No beam quality degradation was observed due to photorefraction at pump power densities up to 2 MW/cm(2). The proposed approach can be readily extended to Watt-level generation of any desired wavelength in the 560 to 770 nm range.
采用单模、线偏振、1118纳米的镱光纤激光器泵浦短光纤长度的保偏拉曼腔,得到了线宽为0.4纳米、功率为23瓦的连续波1179纳米光源。在掺氧化镁的周期极化铌酸锂晶体中,实现了拉曼光源高效的单程倍频至589纳米,连续波功率超过3瓦。在泵浦功率密度高达2兆瓦/平方厘米时,未观察到因光折变导致的光束质量下降。所提出的方法可以很容易地扩展到560至770纳米范围内任意所需波长的瓦级产生。