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Intracavity Frequency Doubling and Difference Frequency Mixing for Pulsed ns Ti:Sapphire Laser Systems at On-Line Radioactive Ion Beam Facilities

机译:在线放射性离子束设施中脉冲ns Ti:蓝宝石激光系统的腔内倍频和差频混合

摘要

Intra-cavity second harmonic generation of a Titanium:sapphire (Ti:sa) laser system has been used to improve the conversion efficiency to the second harmonic. Over the course of several experiments performance data spanning the whole wavelength range of a Ti:sa has been collected, which may be used as a guideline for future experiments. An average output power of up to 3.7 W was achieved, resulting in a conversion efficiency of >75% to the second harmonic. A wavelength coverage from 340–525 nm has been demonstrated. To extend the wavelength range of the solid state laser system, difference frequency mixing has been applied to the intra-cavity doubled light and the fundamental output of a second Ti:sa laser. Up to 30 mW of yellow light at the sodium D2 line at 589 nm was generated. Based on numerical calculations this output power could still be improved by a factor of ten with simple changes in the experimental setup. Laser spectroscopy and measurement of the saturation behaviour has been carried out on an atomic beam of stable sodium.
机译:钛蓝宝石(Ti:sa)激光系统的腔内二次谐波产生已用于提高向二次谐波的转换效率。在几次实验过程中,已经收集了跨越Ti:sa整个波长范围的性能数据,可用作将来实验的指南。实现了高达3.7 W的平均输出功率,导致二次谐波的转换效率> 75%。波长覆盖范围为340–525 nm。为了扩展固态激光器系统的波长范围,已将差频混合应用于腔内加倍光和第二个Ti:sa激光器的基本输出。在589 nm的钠D2线处产生高达30µmW的黄光。根据数值计算,只要在实验装置中进行简单的更改,该输出功率仍可以提高十倍。激光光谱和饱和行为的测量已在稳定钠原子束上进行。

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