Directional linearly polarized terahertz emission from argon clusters irradiated by noncollinear double-pulse beams

It has been demonstrated that the interaction between argon clusters and intense femtosecond double laser pulses with appropriate intervals in time and space provides important properties for terahertz electromagnetic wave generation, namely, high forward directivity, power enhancement, and linear p...

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Veröffentlicht in:Applied physics letters 2017-12, Vol.111 (24)
Hauptverfasser: Mori, Kazuaki, Hashida, Masaki, Nagashima, Takeshi, Li, Dazhi, Teramoto, Kensuke, Nakamiya, Yoshihide, Inoue, Shunsuke, Sakabe, Shuji
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container_issue 24
container_start_page
container_title Applied physics letters
container_volume 111
creator Mori, Kazuaki
Hashida, Masaki
Nagashima, Takeshi
Li, Dazhi
Teramoto, Kensuke
Nakamiya, Yoshihide
Inoue, Shunsuke
Sakabe, Shuji
description It has been demonstrated that the interaction between argon clusters and intense femtosecond double laser pulses with appropriate intervals in time and space provides important properties for terahertz electromagnetic wave generation, namely, high forward directivity, power enhancement, and linear polarization with a variable direction. Irradiating argon clusters with double pulses (1 and 3 mJ, 40 fs, 810 nm) in 133-ps and 40-μm intervals results in terahertz wave emission in the forward direction that is 10 times greater than that for a single pulse. The polarization direction of terahertz electromagnetic waves can be varied by changing the relative focal positions of the first and second pulses.
doi_str_mv 10.1063/1.4991736
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source AIP Journals Complete; Alma/SFX Local Collection
subjects Applied physics
Argon
Clusters
Directivity
Electromagnetic radiation
Emission
Femtosecond pulses
Intervals
Linear polarization
Terahertz frequencies
Wave generation
title Directional linearly polarized terahertz emission from argon clusters irradiated by noncollinear double-pulse beams
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