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Carrier-envelope phase effects on high-harmonic generation driven by mid-infrared laser field

Carrier-envelope phase effects on high-harmonic generation driven by mid-infrared laser field
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摘要 The influence of the carrier-envelope phase on high-harmonic generation is investigated, both experimentally and theoretically, for three different interaction gas media, driven by mid-infrared, few-cycle and CEP-stabiUzed laser pulses. Different patterns of harmonic spectra with varying CEP for the three interaction gas media are observed. Furthermore, in comparing our experiment results to the previous works driven by near-infrared laser pulses, different phenomena are found. Through numerical simulation, we find that for the two different kinds of driving fields, i.e. mid-infrared and near-infrared laser pulses, different kinds of electron trajectories contribute to the generation of high harmonics. The influence of the carrier-envelope phase on high-harmonic generation is investigated, both experimentally and theoretically, for three different interaction gas media, driven by mid-infrared, few-cycle and CEP-stabiUzed laser pulses. Different patterns of harmonic spectra with varying CEP for the three interaction gas media are observed. Furthermore, in comparing our experiment results to the previous works driven by near-infrared laser pulses, different phenomena are found. Through numerical simulation, we find that for the two different kinds of driving fields, i.e. mid-infrared and near-infrared laser pulses, different kinds of electron trajectories contribute to the generation of high harmonics.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第10期168-174,共7页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.11127901,61221064,11134010,11227902,11222439,and 11274325) the National Basic Research Program of China(Grant No.2011CB808103) the Funds from Shanghai Commission of Science and Technology(Grant No.12QA1403700)
关键词 high-harmonic generation carrier-envelope phase MID-INFRARED high-harmonic generation, carrier-envelope phase, mid-infrared
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