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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Compact geometry for diode-pumped Cr:LiSAF femtosecond laser
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Compact geometry for diode-pumped Cr:LiSAF femtosecond laser

机译:二极管泵浦Cr:LiSAF飞秒激光器的紧凑几何形状

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摘要

A novel geometry for dispersion compensation in femtosecond lasers without specific cut of optical parts in a flat/Brewster angle or Gires-Tournots mirrors is demonstrated for attaining a compact diode-pumped Cr:LiSAF femtosecond pulse laser. In this geometry, the laser medium lies between the dispersion-compensation prism pair. This approach enables the laser to operate at variable repetition rates from 163 to 235 MHz keeping the pulsewidth less than 90 fs, where the value of the time-bandwidth product are not larger than 0.34. An 89 fs pulse duration generated at the 235 MHz repetition rate is, to our knowledge, the shortest pulse achieved in an all-solid-state Kerr-lens mode-locked laser operating above the 200 MHz repetition rate.
机译:为了实现紧凑的二极管泵浦Cr:LiSAF飞秒脉冲激光器,演示了一种新颖的几何形状,用于飞秒激光器中的色散补偿,而无需在平面/布鲁斯特角或Gires-Tournots镜中专门切割光学部件。在这种几何形状中,激光介质位于色散补偿棱镜对之间。这种方法使激光器能够在163至235 MHz的可变重复频率下工作,从而使脉冲宽度小于90 fs,其中时间带宽积的值不大于0.34。据我们所知,在235 MHz重复频率下产生的89 fs脉冲持续时间是在200 MHz重复频率以上工作的全固态Kerr-lens锁模激光器中获得的最短脉冲。

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