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Femtosecond-pulse cavity-dumped solid-state oscillator design and application to ultrafast microscopy

机译:飞秒脉冲腔甩固体振荡器的设计及其在超快显微镜中的应用

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摘要

The construction, modeling, and performance characteristics of a new resonator design for ultrafast cavity-dumped oscillators are presented. An acousto-optic Bragg cell was incorporated at the end of the longer arm of a Ti:sapphire oscillator rather than in the shorter arm as in several recent studies. The new arrangement improves the pulse intensity stability of the oscillator and significantly reduces the effort required in construction. The experimental findings are supported by comparison of the stability regions of the laser cavities based on the two different designs. To demonstrate the potential of cavity-dumped oscillators for spatially resolved ultrafast spectroscopy studies, the pulse duration is characterized at the focal plane of two achromatic high-N.A, oil-immersion objectives with different amounts of fiat-field correction. Transform-limited pulse widths as short as 15 fs are obtained. To our knowledge, this is the shortest pulse duration measured with true high-N.A. (N.A.> 1) focusing conditions.
机译:提出了一种用于超快腔倾倒振荡器的新型谐振器设计的结构,建模和性能特征。在最近的几项研究中,在Ti:蓝宝石振荡器的较长臂的末端而不是较短臂中加入了声光布拉格单元。新的布置改善了振荡器的脉冲强度稳定性,并显着减少了构造所需的工作量。通过比较基于两种不同设计的激光腔的稳定性区域,可以支持实验结果。为了证明腔抛物振荡器在空间分辨超快光谱研究中的潜力,在两个消色差高N.A油浸物镜的焦平面上对脉冲持续时间进行了表征,并进行了不同量的平场校正。获得的转换限制脉冲宽度短至15 fs。据我们所知,这是在真正高NA下测得的最短脉冲持续时间。 (N.A.> 1)聚焦条件。

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