Influence of laser-preformed plasma on THz wave generation in air by bichromatic laser pulses

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • V. Vaičaitis
  • M. Ivanov
  • K. Adomavičius
  • Svirskas
  • Uwe Morgner
  • Ihar Babushkin

Organisationseinheiten

Externe Organisationen

  • Vilnius University
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Details

OriginalspracheEnglisch
Aufsatznummer095402
FachzeitschriftLaser Physics
Jahrgang28
Ausgabenummer9
PublikationsstatusVeröffentlicht - 10 Juli 2018

Abstract

Influence of laser-preformed plasma on the energy and spatial properties of terahertz (THz) emission generated in air by focused femtosecond bichromatic laser pulses has been investigated. It was found that the power of THz waves decreases in the presence of the prepulse-created plasma even when the crossing point of the two laser beams is well before or after the pump beam focus. Analysis of the experimentally obtained data revealed that at least two different mechanisms - namely, phase modification of the pump waves and screening of THz radiation by preformed plasma filaments - are responsible for this effect.

ASJC Scopus Sachgebiete

Zitieren

Influence of laser-preformed plasma on THz wave generation in air by bichromatic laser pulses. / Vaičaitis, V.; Ivanov, M.; Adomavičius, K. et al.
in: Laser Physics, Jahrgang 28, Nr. 9, 095402, 10.07.2018.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Vaičaitis, V., Ivanov, M., Adomavičius, K., Svirskas, Morgner, U., & Babushkin, I. (2018). Influence of laser-preformed plasma on THz wave generation in air by bichromatic laser pulses. Laser Physics, 28(9), Artikel 095402. https://doi.org/10.1088/1555-6611/aaca5f
Vaičaitis V, Ivanov M, Adomavičius K, Svirskas , Morgner U, Babushkin I. Influence of laser-preformed plasma on THz wave generation in air by bichromatic laser pulses. Laser Physics. 2018 Jul 10;28(9):095402. doi: 10.1088/1555-6611/aaca5f
Vaičaitis, V. ; Ivanov, M. ; Adomavičius, K. et al. / Influence of laser-preformed plasma on THz wave generation in air by bichromatic laser pulses. in: Laser Physics. 2018 ; Jahrgang 28, Nr. 9.
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abstract = "Influence of laser-preformed plasma on the energy and spatial properties of terahertz (THz) emission generated in air by focused femtosecond bichromatic laser pulses has been investigated. It was found that the power of THz waves decreases in the presence of the prepulse-created plasma even when the crossing point of the two laser beams is well before or after the pump beam focus. Analysis of the experimentally obtained data revealed that at least two different mechanisms - namely, phase modification of the pump waves and screening of THz radiation by preformed plasma filaments - are responsible for this effect.",
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AU - Vaičaitis, V.

AU - Ivanov, M.

AU - Adomavičius, K.

AU - Svirskas,

AU - Morgner, Uwe

AU - Babushkin, Ihar

PY - 2018/7/10

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N2 - Influence of laser-preformed plasma on the energy and spatial properties of terahertz (THz) emission generated in air by focused femtosecond bichromatic laser pulses has been investigated. It was found that the power of THz waves decreases in the presence of the prepulse-created plasma even when the crossing point of the two laser beams is well before or after the pump beam focus. Analysis of the experimentally obtained data revealed that at least two different mechanisms - namely, phase modification of the pump waves and screening of THz radiation by preformed plasma filaments - are responsible for this effect.

AB - Influence of laser-preformed plasma on the energy and spatial properties of terahertz (THz) emission generated in air by focused femtosecond bichromatic laser pulses has been investigated. It was found that the power of THz waves decreases in the presence of the prepulse-created plasma even when the crossing point of the two laser beams is well before or after the pump beam focus. Analysis of the experimentally obtained data revealed that at least two different mechanisms - namely, phase modification of the pump waves and screening of THz radiation by preformed plasma filaments - are responsible for this effect.

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