Theoretical investigation on generating terahertz radiation from gas plasma induced by three-color ultrashort lasers

Generation of intense broadband terahertz(THz) waves from gas plasma induced by tri-color ultrashort(fundamental(ω), second harmonic(2ω), and third harmonic(3ω)) laser pulses is theoretically investigated. Simulation results show that the 3ω laser pulse can greatly enhance or suppress the generation...

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Published inChinese physics B Vol. 24; no. 8; pp. 639 - 645
Main Author 王成亮 杨振刚 刘劲松 汪盛烈 王可嘉
Format Journal Article
LanguageEnglish
Published 01.08.2015
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ISSN1674-1056
2058-3834
1741-4199
DOI10.1088/1674-1056/24/8/088703

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Abstract Generation of intense broadband terahertz(THz) waves from gas plasma induced by tri-color ultrashort(fundamental(ω), second harmonic(2ω), and third harmonic(3ω)) laser pulses is theoretically investigated. Simulation results show that the 3ω laser pulse can greatly enhance or suppress the generation of THz wave at different values of relative phase(θ 3) between the 3ω and ω fields. Moreover, the polarities of the generated THz waves can be controlled by changing θ 3,with the relative phase θ 2(between the 2ω and ω fields) fixed to be a certain value. All of our results show that θ 3 plays a key role in the generation process, which promises to control the intensity as well as the polarity of gas plasma-induced THz radiation.
AbstractList Generation of intense broadband terahertz(THz) waves from gas plasma induced by tri-color ultrashort(fundamental(ω), second harmonic(2ω), and third harmonic(3ω)) laser pulses is theoretically investigated. Simulation results show that the 3ω laser pulse can greatly enhance or suppress the generation of THz wave at different values of relative phase(θ 3) between the 3ω and ω fields. Moreover, the polarities of the generated THz waves can be controlled by changing θ 3,with the relative phase θ 2(between the 2ω and ω fields) fixed to be a certain value. All of our results show that θ 3 plays a key role in the generation process, which promises to control the intensity as well as the polarity of gas plasma-induced THz radiation.
Generation of intense broadband terahertz (THz) waves from gas plasma induced by tri-color ultrashort (fundamental ( omega , second harmonic (2 omega , and third harmonic (3 omega laser pulses is theoretically investigated. Simulation results show that the 3 omega laser pulse can greatly enhance or suppress the generation of THz wave at different values of relative phase ([straighttheta] sub(3) between the 3 omega and omega fields. Moreover, the polarities of the generated THz waves can be controlled by changing [straighttheta] sub(3), with the relative phase [straighttheta] sub(2) (between the 2 omega and omega fields) fixed to be a certain value. All of our results show that [straighttheta] sub(3) plays a key role in the generation process, which promises to control the intensity as well as the polarity of gas plasma-induced THz radiation.
Author 王成亮 杨振刚 刘劲松 汪盛烈 王可嘉
AuthorAffiliation Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology;School of Optical and Electronic Information, Huazhong University of Science and Technology
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Notes Wang Cheng-Liang;Yang Zhen-Gang;Liu Jin-Song;Wang Sheng-Lie;Wang Ke-Jia;Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology;School of Optical and Electronic Information, Huazhong University of Science and Technology
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Snippet Generation of intense broadband terahertz(THz) waves from gas plasma induced by tri-color ultrashort(fundamental(ω), second harmonic(2ω), and third...
Generation of intense broadband terahertz (THz) waves from gas plasma induced by tri-color ultrashort (fundamental ( omega , second harmonic (2 omega , and...
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SubjectTerms Broadband
Gas plasmas
Harmonics
laser;photocurrent
Lasers
model;plasma
Polarity
Simulation
terahertz;ultrashort
Title Theoretical investigation on generating terahertz radiation from gas plasma induced by three-color ultrashort lasers
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