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采用 4.9MHz 啁啾脉冲多通腔 Cr⁴⁺:镁橄榄石振荡器,直接产生 81nJ 脉冲并将其压缩到亚皮秒范围。

Direct generation of 81 nJ pulses and external compression to a subpicosecond regime with a 4.9 MHz chirped-pulse multipass-cavity Cr⁴⁺:forsterite oscillator.

机构信息

Laser Research Laboratory, Department of Physics, Koç University Rumelifeneri, Sariyer, Istanbul, 34450, Turkey.

出版信息

Opt Lett. 2011 May 1;36(9):1572-4. doi: 10.1364/OL.36.001572.

Abstract

We report direct generation of 81 nJ chirped pulses from a room-temperature, Kerr lens mode-locked Cr⁴⁺:forsterite oscillator operating at 1258 nm. To increase the pulse energy, the pulse repetition rate of the short x-type resonator was lowered from 143 to 4.9 MHz by the addition of a q-preserving multipass cavity, which provided an additional effective optical path length of 59.4 m. The duration of the chirped pulses was around 5.5 ps with a spectral width of 21 nm. The pulses were externally compressed to 607 fs by using a diffraction grating pair. To our knowledge, this is the highest reported pulse energy directly generated from a room-temperature mode-locked Cr⁴⁺:forsterite laser.

摘要

我们报告了直接从室温下的 Cr⁴⁺:镁橄榄石振荡器产生 81nJ 啁啾脉冲,该振荡器工作在 1258nm 波长,采用 Kerr 透镜锁模技术。为了增加脉冲能量,通过增加一个保持 q 值的多通腔,将短 x 型谐振器的脉冲重复率从 143MHz 降低到 4.9MHz,这提供了 59.4m 的额外有效光程。啁啾脉冲的持续时间约为 5.5ps,光谱宽度为 21nm。通过使用一对衍射光栅,将脉冲外部压缩到 607fs。据我们所知,这是从室温锁模 Cr⁴⁺:镁橄榄石激光器中直接产生的最高报道脉冲能量。

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