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High-Pulse-Energy Mode-Locked Picosecond Oscillator

机译:高脉冲能量锁模皮秒振荡器

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We report on a high-pulse-energy solid-state picosecond Nd:YVO_4 oscillator with cavity-dumping. The laser is end-pumped by an 808 nm laser diode and passively mode-locked with a semiconductor saturable absorption mirror (SESAM). In pure cw-mode-locking, this laser produced 2.5 W of average power at a pulse repetition rate of 40 MHz and pulse duration around 12 ps. A cavity dumping technique using an intra-cavity BBO electro-optic crystal to which bidirectional voltage was applied was adopted, effectively improving the cavity-dumping rate. Tunable high repetition rate from 100 kHz to 1 MHz was achieved. With electro-optic cavity dumper working at 1 MHz repetition rate, we achieved average power 594 mW. The laser includes a 5 mm long, a-cut, 0.5% doped Nd:YVO_4 crystal with a 5-degree angle at one end face. Laser radiation is coupled out from the crystal end face with a 5-degree angle, without requiring insertion of a thin-film polarizer (TFP), thus simplifying the laser structure. This picosecond laser system has the advantages of compact structure and high stability, providing a good oscillator for regenerative amplifiers.
机译:我们报告了一种具有腔突降的高脉冲能量皮秒级Nd:YVO_4振荡器。激光由808 nm激光二极管进行末端泵浦,并通过半导体可饱和吸收镜(SESAM)进行被动锁模。在纯cw锁模模式下,此激光器以40 MHz的脉冲重复频率和约12 ps的脉冲持续时间产生2.5 W的平均功率。采用腔内BBO电光晶体施加双向电压的腔体倾倒技术,有效提高了腔体倾倒率。实现了从100 kHz到1 MHz的可调高重复率。通过以1 MHz重复频率工作的电光腔式自卸车,我们获得了594 mW的平均功率。激光器包括一个5毫米长的a形切割,掺杂0.5%的Nd:YVO_4晶体,该晶体的一个端面为5度角。激光辐射以5度角从晶体端面耦合输出,而无需插入薄膜偏振器(TFP),从而简化了激光结构。皮秒激光系统具有结构紧凑,稳定性高的优点,为再生放大器提供了良好的振荡器。

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