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倍频程可调谐紫外泵浦光学参量放大器:在0.5兆赫兹重复频率下产生低至20飞秒的脉冲。

Octave wide tunable UV-pumped NOPA: pulses down to 20 fs at 0.5 MHz repetition rate.

作者信息

Homann C, Schriever C, Baum P, Riedle E

机构信息

Lehrstuhl für BioMolekulare Optik, Fakultät für Physik, Ludwig-Maximilians-Universität München, Oettingenstrasse 67, 80538 München, Germany.

出版信息

Opt Express. 2008 Apr 14;16(8):5746-56. doi: 10.1364/oe.16.005746.

Abstract

Femtosecond laser pulses, which are tunable from 440 to 990 nm, are generated at MHz repetition rates by noncollinear parametric amplification (NOPA). The pulses have durations of 20 to 30 fs over the major part of the tuning range and a high energy stability of 1.3% (rms). The NOPA is pumped with ultraviolet pulses from the third harmonic of an ytterbium doped fiber laser system and seeded by a smooth continuum generated in bulk sapphire. The residual second harmonic is used to pump an additional NOPA, which is independently tunable from 620 to 990 nm. Interference experiments show that the two NOPA systems have a precisely locked relative phase, despite of being pumped by different harmonics with a random phase jitter. This demonstrates that the phase of pulses generated by optical parametric amplification does not depend on the pump phase.

摘要

通过非共线参量放大(NOPA)以兆赫兹重复频率产生可调谐范围为440至990纳米的飞秒激光脉冲。在调谐范围的大部分区域内,脉冲持续时间为20至30飞秒,并且具有1.3%(均方根)的高能量稳定性。NOPA由掺镱光纤激光系统的三次谐波产生的紫外脉冲泵浦,并由块状蓝宝石中产生的平滑连续谱作为种子光。残余的二次谐波用于泵浦另一个NOPA,该NOPA可独立调谐范围为620至990纳米。干涉实验表明,尽管两个NOPA系统由具有随机相位抖动的不同谐波泵浦,但它们具有精确锁定的相对相位。这表明光学参量放大产生的脉冲相位不依赖于泵浦相位。

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