Schnitzler Harald, Fröhlich Ulf, Boley Tobias K W, Clemen Anabel E M, Mlynek Jürgen, Peters Achim, Schiller Stephan
Fachbereich Physik, Universität Konstanz, 78457 Konstanz, Germany.
Appl Opt. 2002 Nov 20;41(33):7000-5. doi: 10.1364/ao.41.007000.
We present a novel approach for the generation of higly frequency-stable, widely tunable, single-frequency cw UV light that is suitable for high-resolution spectroscopy. Sum-frequency generation (SFG) of two solid-state sources with a single cavity resonant for both fundamental waves is employed. Using a highly stable, narrow-linewidth frequency-doubled cw Nd:YAG laser as a master laser and slaving to it the SFG cavity and the other fundamental wave from a Ti:sapphire laser, we generate UV radiation of 33-mW output power around 313 nm. Alternatively, we use a diode laser instead of the Ti:sapphire laser and produce an output power of 2.1 mW at 313 nm. With both setups we obtain a continuous tunability of >15 GHz, short-term frequency fluctuations in the submegahertz range, a long-term frequency drift below 100 MHz/h, and stable operation for several hours. The theory of optimized doubly resonant SFG is also given.
我们提出了一种生成高频稳定、宽可调谐单频连续波紫外光的新方法,该紫外光适用于高分辨率光谱学。采用了对两个基波都具有单腔共振的两个固态源的和频产生(SFG)。使用高稳定、窄线宽的倍频连续波Nd:YAG激光器作为主激光器,并使SFG腔以及来自钛宝石激光器的另一个基波与之锁定,我们在313nm附近产生了输出功率为33mW的紫外辐射。或者,我们使用二极管激光器代替钛宝石激光器,并在313nm处产生了2.1mW的输出功率。在这两种设置下,我们都实现了大于15GHz的连续可调谐性、亚兆赫兹范围内的短期频率波动、低于100MHz/h的长期频率漂移以及数小时的稳定运行。还给出了优化的双共振SFG理论。