Cargando…

Nonlinear Propagation and Filamentation on 100 Meter Air Path of Femtosecond Beam Partitioned by Wire Mesh

High-intensity (∼1 TW/cm [Formula: see text] and higher) region formed in the propagation of ∼60 GW, 90 fs Ti:Sapphire laser pulse on a ∼100 m path in air spans for several tens of meters and includes a plasma filament and a postfilament light channel. The intensity in this extended region is high e...

Descripción completa

Detalles Bibliográficos
Autores principales: Geints, Yuri E., Minina, Olga V., Geints, Ilia Yu., Seleznev, Leonid V., Pushkarev, Dmitrii V., Mokrousova, Daria V., Rizaev, Georgy E., Shipilo, Daniil E., Nikolaeva, Irina A., Kurilova, Maria V., Panov, Nikolay A., Kosareva, Olga G., Houard, Aurélien, Couairon, Arnaud, Ionin, Andrey A., Liu, Weiwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9460567/
https://www.ncbi.nlm.nih.gov/pubmed/36080786
http://dx.doi.org/10.3390/s22176322
_version_ 1784786778718208000
author Geints, Yuri E.
Minina, Olga V.
Geints, Ilia Yu.
Seleznev, Leonid V.
Pushkarev, Dmitrii V.
Mokrousova, Daria V.
Rizaev, Georgy E.
Shipilo, Daniil E.
Nikolaeva, Irina A.
Kurilova, Maria V.
Panov, Nikolay A.
Kosareva, Olga G.
Houard, Aurélien
Couairon, Arnaud
Ionin, Andrey A.
Liu, Weiwei
author_facet Geints, Yuri E.
Minina, Olga V.
Geints, Ilia Yu.
Seleznev, Leonid V.
Pushkarev, Dmitrii V.
Mokrousova, Daria V.
Rizaev, Georgy E.
Shipilo, Daniil E.
Nikolaeva, Irina A.
Kurilova, Maria V.
Panov, Nikolay A.
Kosareva, Olga G.
Houard, Aurélien
Couairon, Arnaud
Ionin, Andrey A.
Liu, Weiwei
author_sort Geints, Yuri E.
collection PubMed
description High-intensity (∼1 TW/cm [Formula: see text] and higher) region formed in the propagation of ∼60 GW, 90 fs Ti:Sapphire laser pulse on a ∼100 m path in air spans for several tens of meters and includes a plasma filament and a postfilament light channel. The intensity in this extended region is high enough to generate an infrared supercontinuum wing and to initiate laser-induced discharge in the gap between the electrodes. In the experiment and simulations, we delay the high-intensity region along the propagation direction by inserting metal-wire meshes with square cells at the laser system output. We identify the presence of a high-intensity region from the clean-spatial-mode distributions, appearance of the infrared supercontinuum wing, and occurrence of the laser-induced discharge. In the case of free propagation (without any meshes), the onset of the high-intensity zone is at 40–52 m from the laser system output with ∼30 m extension. Insertion of the mesh with 3 mm cells delays the beginning of the high-intensity region to 49–68 m with the same ∼30 m extension. A decrease in the cell size to 1 mm leads to both delay and shrinking of the high-intensity zone to 71–73 m and 6 m, respectively. Three-dimensional simulations in space confirm the mesh-induced delay of the high-intensity zone as the cell size decreases.
format Online
Article
Text
id pubmed-9460567
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-94605672022-09-10 Nonlinear Propagation and Filamentation on 100 Meter Air Path of Femtosecond Beam Partitioned by Wire Mesh Geints, Yuri E. Minina, Olga V. Geints, Ilia Yu. Seleznev, Leonid V. Pushkarev, Dmitrii V. Mokrousova, Daria V. Rizaev, Georgy E. Shipilo, Daniil E. Nikolaeva, Irina A. Kurilova, Maria V. Panov, Nikolay A. Kosareva, Olga G. Houard, Aurélien Couairon, Arnaud Ionin, Andrey A. Liu, Weiwei Sensors (Basel) Article High-intensity (∼1 TW/cm [Formula: see text] and higher) region formed in the propagation of ∼60 GW, 90 fs Ti:Sapphire laser pulse on a ∼100 m path in air spans for several tens of meters and includes a plasma filament and a postfilament light channel. The intensity in this extended region is high enough to generate an infrared supercontinuum wing and to initiate laser-induced discharge in the gap between the electrodes. In the experiment and simulations, we delay the high-intensity region along the propagation direction by inserting metal-wire meshes with square cells at the laser system output. We identify the presence of a high-intensity region from the clean-spatial-mode distributions, appearance of the infrared supercontinuum wing, and occurrence of the laser-induced discharge. In the case of free propagation (without any meshes), the onset of the high-intensity zone is at 40–52 m from the laser system output with ∼30 m extension. Insertion of the mesh with 3 mm cells delays the beginning of the high-intensity region to 49–68 m with the same ∼30 m extension. A decrease in the cell size to 1 mm leads to both delay and shrinking of the high-intensity zone to 71–73 m and 6 m, respectively. Three-dimensional simulations in space confirm the mesh-induced delay of the high-intensity zone as the cell size decreases. MDPI 2022-08-23 /pmc/articles/PMC9460567/ /pubmed/36080786 http://dx.doi.org/10.3390/s22176322 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Geints, Yuri E.
Minina, Olga V.
Geints, Ilia Yu.
Seleznev, Leonid V.
Pushkarev, Dmitrii V.
Mokrousova, Daria V.
Rizaev, Georgy E.
Shipilo, Daniil E.
Nikolaeva, Irina A.
Kurilova, Maria V.
Panov, Nikolay A.
Kosareva, Olga G.
Houard, Aurélien
Couairon, Arnaud
Ionin, Andrey A.
Liu, Weiwei
Nonlinear Propagation and Filamentation on 100 Meter Air Path of Femtosecond Beam Partitioned by Wire Mesh
title Nonlinear Propagation and Filamentation on 100 Meter Air Path of Femtosecond Beam Partitioned by Wire Mesh
title_full Nonlinear Propagation and Filamentation on 100 Meter Air Path of Femtosecond Beam Partitioned by Wire Mesh
title_fullStr Nonlinear Propagation and Filamentation on 100 Meter Air Path of Femtosecond Beam Partitioned by Wire Mesh
title_full_unstemmed Nonlinear Propagation and Filamentation on 100 Meter Air Path of Femtosecond Beam Partitioned by Wire Mesh
title_short Nonlinear Propagation and Filamentation on 100 Meter Air Path of Femtosecond Beam Partitioned by Wire Mesh
title_sort nonlinear propagation and filamentation on 100 meter air path of femtosecond beam partitioned by wire mesh
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9460567/
https://www.ncbi.nlm.nih.gov/pubmed/36080786
http://dx.doi.org/10.3390/s22176322
work_keys_str_mv AT geintsyurie nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT mininaolgav nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT geintsiliayu nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT seleznevleonidv nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT pushkarevdmitriiv nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT mokrousovadariav nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT rizaevgeorgye nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT shipilodaniile nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT nikolaevairinaa nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT kurilovamariav nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT panovnikolaya nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT kosarevaolgag nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT houardaurelien nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT couaironarnaud nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT ioninandreya nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh
AT liuweiwei nonlinearpropagationandfilamentationon100meterairpathoffemtosecondbeampartitionedbywiremesh