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Isolated sub-30-attosecond pulse generation using a multicycle two-color chirped laser and a static electric field 被引量:1

Isolated sub-30-attosecond pulse generation using a multicycle two-color chirped laser and a static electric field
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摘要 We present a theoretical investigation of high-order harmonic generation in a chirped two-color laser field, which is synthesized by a 10-fs/800-nm fundamental chirped pulse and a 10-fs/1760-nm subharmonic pulse. It is shown that a supercontinuum can be produced using the multicycle two-color chirped field. However, the supercontinuum reveals a strong modulation structure, which is not good for the generation of an isolated attosecond pulse. By adding a static electric field to the multicycle two-color chirped field, not only the harmonic cutoff is extended remarkably, but also the quantum paths of the high-order harmonic generation (HHG) are modified significantly. As a result, both the extension of the supercontinuum and the selection of a single quantum path are achieved, producing an isolated 23-as pulse with a bandwidth of about 170.6 eV. Furthermore, the influences of the laser intensities on the supercontinuum and isolated attosecond pulse generation are investigated. We present a theoretical investigation of high-order harmonic generation in a chirped two-color laser field, which is synthesized by a 10-fs/800-nm fundamental chirped pulse and a 10-fs/1760-nm subharmonic pulse. It is shown that a supercontinuum can be produced using the multicycle two-color chirped field. However, the supercontinuum reveals a strong modulation structure, which is not good for the generation of an isolated attosecond pulse. By adding a static electric field to the multicycle two-color chirped field, not only the harmonic cutoff is extended remarkably, but also the quantum paths of the high-order harmonic generation (HHG) are modified significantly. As a result, both the extension of the supercontinuum and the selection of a single quantum path are achieved, producing an isolated 23-as pulse with a bandwidth of about 170.6 eV. Furthermore, the influences of the laser intensities on the supercontinuum and isolated attosecond pulse generation are investigated.
作者 张刚台
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第4期230-239,共10页 中国物理B(英文版)
基金 Project supported by the Science Foundation of Baoji University of Arts and Sciences,China(Grant No.ZK11061) the Natural Science Foundation of Education Committee of Shaanxi Province,China(Grant No.2013JK0637)
关键词 high-order harmonic attosecond pulse generation SUPERCONTINUUM combined field high-order harmonic, attosecond pulse generation, supercontinuum, combined field
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