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Generation of 10-m-lengthscale plasma columns by resonant and off-resonant laser pulses

Creating extended, highly homogeneous plasma columns like that required by plasma wakefield accelerators can be a challenge. We study the propagation of ultra-short, TW power ionizing laser pulses in a 10-meter-long rubidium vapor and the plasma columns they create. We perform experiments and numeri...

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Autores principales: Demeter, G., Moody, J.T., Kedves, M.A., Batsch, F., Bergamaschi, M., Fedosseev, V., Granados, E., Muggli, P., Panuganti, H., Della Porta, G. Zevi
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.optlastec.2023.109921
http://cds.cern.ch/record/2867713
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author Demeter, G.
Moody, J.T.
Kedves, M.A.
Batsch, F.
Bergamaschi, M.
Fedosseev, V.
Granados, E.
Muggli, P.
Panuganti, H.
Della Porta, G. Zevi
author_facet Demeter, G.
Moody, J.T.
Kedves, M.A.
Batsch, F.
Bergamaschi, M.
Fedosseev, V.
Granados, E.
Muggli, P.
Panuganti, H.
Della Porta, G. Zevi
author_sort Demeter, G.
collection CERN
description Creating extended, highly homogeneous plasma columns like that required by plasma wakefield accelerators can be a challenge. We study the propagation of ultra-short, TW power ionizing laser pulses in a 10-meter-long rubidium vapor and the plasma columns they create. We perform experiments and numerical simulations for pulses with 780 nm central wavelength, which is resonant with the D$_2$ transition from the ground state of rubidium atoms, as well as for pulses with 810 nm central wavelength, some distance from resonances. We measure transmitted energy and transverse width of the pulse and use schlieren imaging to probe the plasma column in the vapor close to the end of the vapor source. We find, that resonant pulses are more confined in a transverse direction by the interaction than off-resonant pulses are and that the plasma channels they create are more sharply bounded. Off-resonant pulses leave a wider layer of partially ionized atoms and thus lose more energy per unit propagation distance. Using experimental data, we estimate the energy required to generate a 20-meter-long plasma column and conclude that resonant pulses are much more suitable for creating a long, homogeneous plasma.
id cern-2867713
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28677132023-10-03T15:53:20Zdoi:10.1016/j.optlastec.2023.109921http://cds.cern.ch/record/2867713engDemeter, G.Moody, J.T.Kedves, M.A.Batsch, F.Bergamaschi, M.Fedosseev, V.Granados, E.Muggli, P.Panuganti, H.Della Porta, G. ZeviGeneration of 10-m-lengthscale plasma columns by resonant and off-resonant laser pulsesphysics.plasm-phOther Fields of Physicsphysics.opticsOther Fields of PhysicsCreating extended, highly homogeneous plasma columns like that required by plasma wakefield accelerators can be a challenge. We study the propagation of ultra-short, TW power ionizing laser pulses in a 10-meter-long rubidium vapor and the plasma columns they create. We perform experiments and numerical simulations for pulses with 780 nm central wavelength, which is resonant with the D$_2$ transition from the ground state of rubidium atoms, as well as for pulses with 810 nm central wavelength, some distance from resonances. We measure transmitted energy and transverse width of the pulse and use schlieren imaging to probe the plasma column in the vapor close to the end of the vapor source. We find, that resonant pulses are more confined in a transverse direction by the interaction than off-resonant pulses are and that the plasma channels they create are more sharply bounded. Off-resonant pulses leave a wider layer of partially ionized atoms and thus lose more energy per unit propagation distance. Using experimental data, we estimate the energy required to generate a 20-meter-long plasma column and conclude that resonant pulses are much more suitable for creating a long, homogeneous plasma.arXiv:2302.07038oai:cds.cern.ch:28677132023-02-14
spellingShingle physics.plasm-ph
Other Fields of Physics
physics.optics
Other Fields of Physics
Demeter, G.
Moody, J.T.
Kedves, M.A.
Batsch, F.
Bergamaschi, M.
Fedosseev, V.
Granados, E.
Muggli, P.
Panuganti, H.
Della Porta, G. Zevi
Generation of 10-m-lengthscale plasma columns by resonant and off-resonant laser pulses
title Generation of 10-m-lengthscale plasma columns by resonant and off-resonant laser pulses
title_full Generation of 10-m-lengthscale plasma columns by resonant and off-resonant laser pulses
title_fullStr Generation of 10-m-lengthscale plasma columns by resonant and off-resonant laser pulses
title_full_unstemmed Generation of 10-m-lengthscale plasma columns by resonant and off-resonant laser pulses
title_short Generation of 10-m-lengthscale plasma columns by resonant and off-resonant laser pulses
title_sort generation of 10-m-lengthscale plasma columns by resonant and off-resonant laser pulses
topic physics.plasm-ph
Other Fields of Physics
physics.optics
Other Fields of Physics
url https://dx.doi.org/10.1016/j.optlastec.2023.109921
http://cds.cern.ch/record/2867713
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