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Role of trajectory symmetry in solid high-order harmonic generation

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【作者】 王爽赵宇王慧荣邢云鹤霍晓鑫张军

【Author】 Shuang Wang;Yu Zhao;Hui-Rong Wang;Yun-He Xing;Xiao-Xin Huo;Jun Zhang;Institute of Atomic and Molecular Physics,Jilin University;School of Science,Shenyang Ligong University;

【通讯作者】 张军;

【机构】 Institute of Atomic and Molecular Physics,Jilin UniversitySchool of Science,Shenyang Ligong University

【摘要】 High-order harmonic generation(HHG) from a ZnO crystal has been investigated theoretically using a two-band model driven by a few-cycle laser pulse. We observe that harmonics in the cut-off region exhibit periodic frequency shifts with changes in the carrier envelope phase(CEP) of the laser field. When the CEP of the laser pulse is an integer multiple of π, the cut-off region is dominated by even-order harmonics rather than odd-order harmonics. To illustrate the physical mechanism behind the even-order harmonics, we track the trajectories of electrons and holes between two successive halfcycles by performing time-frequency analysis and applying the recollision model. The results show that the maximum electron displacement is symmetric between successive half-cycles for odd-order harmonics. In contrast, the half-cycle symmetry of the maximum displacement is broken in the case of even-order harmonics.

【Abstract】 High-order harmonic generation(HHG) from a ZnO crystal has been investigated theoretically using a two-band model driven by a few-cycle laser pulse. We observe that harmonics in the cut-off region exhibit periodic frequency shifts with changes in the carrier envelope phase(CEP) of the laser field. When the CEP of the laser pulse is an integer multiple of π, the cut-off region is dominated by even-order harmonics rather than odd-order harmonics. To illustrate the physical mechanism behind the even-order harmonics, we track the trajectories of electrons and holes between two successive halfcycles by performing time-frequency analysis and applying the recollision model. The results show that the maximum electron displacement is symmetric between successive half-cycles for odd-order harmonics. In contrast, the half-cycle symmetry of the maximum displacement is broken in the case of even-order harmonics.

【基金】 supported by the Natural Science Foundation of Jilin Province of China (Grant No. 20230101014JC);the National Natural Science Foundation of China (Grant No. 12374265)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2026年04期
  • 【分类号】O43
  • 【下载频次】1
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