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Quantum control of ultrafast magnetic field in H32+ molecules by tricircular polarized laser pulses

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【作者】 徐清芸何永林杨志杰雷志仙闫淑娟刘学深郭静

【Author】 Qing-Yun Xu;Yong-Lin He;Zhi-Jie Yang;Zhi-Xian Lei;Shu-Juan Yan;Xue-Shen Liu;Jing Guo;Institute of Atomic and Molecular Physics, Jilin University;

【通讯作者】 郭静;

【机构】 Institute of Atomic and Molecular Physics, Jilin University

【摘要】 We present a scheme to control the generated ultrafast magnetic field in H32+ molecules using multi-frequency tricircular pulses composed of co-and counter-rotating bicircular pulses. Simulations show that the field amplitude and the wavelength are two significant factors for magnetic field generation by tricircular pulses. Specifically, the strength of the magnetic field is linearly related to the field amplitude at λ0 = 50 nm, while at λ0 = 70 nm, the strength first increases and then decreases with the amplitude, this can be attributed to the resonance between the ground and excited states. Moreover,the phase and helicity of bicircular pulses are shown to have important effects on the magnetic field. The dependence of the magnetic field on the phase arises from the interference effect between multiple ionization pathways. These findings illustrate a guiding principle for controlling the magnetic field in molecular systems for future research in ultrafast magneto-optics.

【Abstract】 We present a scheme to control the generated ultrafast magnetic field in H32+ molecules using multi-frequency tricircular pulses composed of co-and counter-rotating bicircular pulses. Simulations show that the field amplitude and the wavelength are two significant factors for magnetic field generation by tricircular pulses. Specifically, the strength of the magnetic field is linearly related to the field amplitude at λ0 = 50 nm, while at λ0 = 70 nm, the strength first increases and then decreases with the amplitude, this can be attributed to the resonance between the ground and excited states. Moreover,the phase and helicity of bicircular pulses are shown to have important effects on the magnetic field. The dependence of the magnetic field on the phase arises from the interference effect between multiple ionization pathways. These findings illustrate a guiding principle for controlling the magnetic field in molecular systems for future research in ultrafast magneto-optics.

【基金】 Project supported by the National Natural Science Foundation of China (Grant No. 12074146)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2023年03期
  • 【分类号】TN24;O561
  • 【下载频次】2
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