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Improved carrier-envelope phase locking of intense few-cycle laser pulses using above-threshold ionization

机译:使用阈值以上电离改善了强周期激光脉冲的载波-包络锁相

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摘要

A robust nonoptical carrier-envelope phase (CEP) locking feedback loop, which utilizes a measurement of the left-right asymmetry in the above-threshold ionization (ATI) of Xe, is implemented, resulting in a significant improvement over the standard slow-loop f-to-2f technique. This technique utilizes the floating average of a real-time, every-single-shot CEP measurement to stabilize the CEP of few-cycle laser pulses generated by a standard Ti:sapphire chirped-pulse amplified laser system using a hollow-core fiber and chirped mirror compression scheme. With this typical commercially available laser system and the stereographic ATI method, we are able to improve short-term (minutes) CEP stability after a hollow-core fiber from 450 to 290mrad rms and long-term (hours) stability from 480 to 370mrad rms.
机译:实现了鲁棒的非光学载波包络相位(CEP)锁定反馈环路,该环路利用Xe的阈值以上电离(ATI)的左右不对称性进行测量,从而大大改善了标准慢速环路f至2f技术。该技术利用实时,单次CEP测量的浮动平均值来稳定由空心空心光纤和chi构成的标准Ti:蓝宝石chi脉冲放大激光系统生成的几个周期激光脉冲的CEP镜像压缩方案。借助这种典型的商用激光系统和立体ATI方法,我们能够将空心光纤从450到290mrad rms的短期(分钟)稳定性和从480mrad rms的长期(小时)稳定性提高到480mrad rms。 。

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