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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Seeding of an eleven femtosecond optical parametric chirped pulse amplifier and its Nd/sup 3+/ picosecond pump laser from a single broadband Ti:Sapphire oscillator
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Seeding of an eleven femtosecond optical parametric chirped pulse amplifier and its Nd/sup 3+/ picosecond pump laser from a single broadband Ti:Sapphire oscillator

机译:从单个宽带Ti:Sapphire振荡器播种11个飞秒光学参量chi脉冲放大器及其Nd / sup 3 + /皮秒泵浦激光器

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We demonstrate direct simultaneous seeding of a few-cycle optical parametric chirped pulse amplifier (OPCPA) in the 700-1000-nm spectral range, and of a Nd:YLF amplifier emitting 30-ps pulses at 1053 nm by use of a chirped-mirror 6-fs Ti:sapphire oscillator. This approach of employing a single master oscillator to drive two power amplifiers simplifies the pump laser design and is applied to eliminate the timing jitter between the seed and the pump pulses in the OPCPA chain. We show that 10 mJ fundamental picosecond pump pulses with the intensity contrast in excess of 10/sup 4/ relative to the nanosecond Q-switched background can be achieved with the seed intensity available in the edge of the oscillator spectrum around 1053 nm. Cross-correlation measurements between the picosecond pump and femtosecond oscillator pulses reveal no traceable timing jitter between the OPCPA pump and seed pulses. The estimated long-term jitter of 0.3 ps is attributed to the thermal expansion of the cavity of the Nd:YLF regenerative amplifier.
机译:我们演示了在700-1000 nm光谱范围内直接同时播种几个周期的光参量pulse脉冲放大器(OPCPA),以及使用chi镜对Nd:YLF放大器在1053 nm处发射30 ps脉冲的直接播种6-fs Ti:蓝宝石振荡器。这种采用单个主振荡器驱动两个功率放大器的方法简化了泵浦激光器的设计,并被用于消除OPCPA链中种子和泵浦脉冲之间的时序抖动。我们表明,相对于纳秒调Q切换背景,强度对比超过10 / sup 4 /的10 mJ基本皮秒泵浦脉冲可以通过在1053 nm附近的振荡器频谱边缘中可用的种子强度来实现。皮秒泵浦和飞秒振荡器脉冲之间的互相关测量表明,OPCPA泵浦和种子脉冲之间没有可追溯的时序抖动。估计的0.3 ps的长期抖动归因于Nd:YLF再生放大器腔体的热膨胀。

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