首页> 外文期刊>Applied physics. B, Lasers and optics >Generation of sub-4-fs pulses via compression of a white-light continuum using only chirped mirrors
【24h】

Generation of sub-4-fs pulses via compression of a white-light continuum using only chirped mirrors

机译:仅使用chi镜通过压缩白光连续体来产生sub-4-fs脉冲

获取原文
获取原文并翻译 | 示例
           

摘要

Using noble gases as a nonlinear medium, it has become possible to compress energetic laser pulses into the sub-10-fs regime. Hollow fiber capillaries can serve to increase the effective interaction length of the pulses, and impressive white-light continua have been reported as a result. With demonstrated bandwidths exceeding the optical octave, this method holds the potential for generating single-cycle optical pulses. On the practical side, however, it becomes very difficult to compensate for dispersive effects and to fully exploit the enormous bandwidth. We will discuss chirped mirrors as one means for pulse compression. A further challenge lies on the characterization side. Utilizing advanced characterization schemes, we were able to demonstrate compression of a white-light continuum down to a pulse duration of 3.8 fs, which corresponds to only about 1.6 cycles at the carrier wavelength. These are the shortest pulses in the visibleear-infrared wavelength range that have ever been produced with a non-adaptive approach to dispersion compensation. Moreover, these are the shortest pulses generated using chirped mirrors, which compares favorably to previous results that were achieved with much more elaborate and lossier adaptive compression schemes.
机译:使用稀有气体作为非线性介质,将高能激光脉冲压缩到sub-10-fs范围成为可能。中空的纤维毛细管可以增加脉冲的有效相互作用长度,并且据报道令人印象深刻的白光连续性。在已证明的带宽超过光学倍频程的情况下,该方法具有产生单周期光脉冲的潜力。但是,从实践的角度来看,补偿色散效应和充分利用巨大的带宽变得非常困难。我们将讨论chi反射镜作为脉冲压缩的一种方法。另一个挑战在于表征方面。利用先进的表征方案,我们能够证明将白光连续体压缩至3.8 fs的脉冲持续时间,在载波波长下仅相当于约1.6个周期。这些是可见光/近红外波长范围内最短的脉冲,是使用非自适应色散补偿方法产生的。此外,这些是使用chi反射镜生成的最短脉冲,与以前使用更精细,损耗更大的自适应压缩方案所获得的结果相比,具有优势。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号