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Excitation-wavelength-dependent THz wave modulation via external bias electric field

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【作者】 冯世嘉董立泉马丹妮吴同谭永张亮亮张存林赵跃进

【Author】 Shi-Jia Feng;Li-Quan Dong;Dan-Ni Ma;Tong Wu;Yong Tan;Liang-Liang Zhang;Cun-Lin Zhang;Yue-Jin Zhao;Beijing Key Laboratory for Precision Optoelectronic Measurement Instrument and Technology,School of Optics and Photonics,Beijing Institute of Technology;Key Laboratory of Terahertz Optoelectronics,Ministry of Education,Beijing Key Laboratory for Terahertz Spectroscopy and Imaging,and Beijing Advanced Innovation Center for Imaging Technology,Department of Physics,Capital Normal University;

【通讯作者】 张亮亮;赵跃进;

【机构】 Beijing Key Laboratory for Precision Optoelectronic Measurement Instrument and Technology,School of Optics and Photonics,Beijing Institute of TechnologyKey Laboratory of Terahertz Optoelectronics,Ministry of Education,Beijing Key Laboratory for Terahertz Spectroscopy and Imaging,and Beijing Advanced Innovation Center for Imaging Technology,Department of Physics,Capital Normal University

【摘要】 A theoretical model was proposed to describe the effects of external bias electric field on terahertz(THz) generated in air plasma. The model predicted that for a plasma in a bias electric field, the amplification effect of the THz wave intensity increases with the increase of the excitation laser wavelength. We experimentally observed the relationship between the THz enhancement effect and the electric field strength at different wavelengths. Experimental results showed a good agreement with the model predictions. These results enhance our understanding of the physical mechanism by which femtosecond lasers excite air to generate THz and extend the practical applications of THz generation and modulation.

【Abstract】 A theoretical model was proposed to describe the effects of external bias electric field on terahertz(THz) generated in air plasma. The model predicted that for a plasma in a bias electric field, the amplification effect of the THz wave intensity increases with the increase of the excitation laser wavelength. We experimentally observed the relationship between the THz enhancement effect and the electric field strength at different wavelengths. Experimental results showed a good agreement with the model predictions. These results enhance our understanding of the physical mechanism by which femtosecond lasers excite air to generate THz and extend the practical applications of THz generation and modulation.

【基金】 Project supported by the Natural Science Foundation of Beijing,China (Grant No. JQ18015);the National Natural Science Foundation of China (Grant Nos. 61935001 and 61905271)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2020年06期
  • 【分类号】O441
  • 【下载频次】16
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