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Off-harmonic optical probing of high intensity laser plasma expansion dynamics in solid density hydrogen jets

Due to the non-linear nature of relativistic laser induced plasma processes, the development of laser-plasma accelerators requires precise numerical modeling. Especially high intensity laser-solid interactions are sensitive to the temporal laser rising edge and the predictive capability of simulatio...

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Autores principales: Bernert, Constantin, Assenbaum, Stefan, Brack, Florian-Emanuel, Cowan, Thomas E., Curry, Chandra B., Garten, Marco, Gaus, Lennart, Gauthier, Maxence, Göde, Sebastian, Goethel, Ilja, Glenzer, Siegfried H., Kluge, Thomas, Kraft, Stephan, Kroll, Florian, Kuntzsch, Michael, Metzkes-Ng, Josefine, Loeser, Markus, Obst-Huebl, Lieselotte, Rehwald, Martin, Schlenvoigt, Hans-Peter, Schoenwaelder, Christopher, Schramm, Ulrich, Siebold, Mathias, Treffert, Franziska, Ziegler, Tim, Zeil, Karl
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9068928/
https://www.ncbi.nlm.nih.gov/pubmed/35508489
http://dx.doi.org/10.1038/s41598-022-10797-6
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author Bernert, Constantin
Assenbaum, Stefan
Brack, Florian-Emanuel
Cowan, Thomas E.
Curry, Chandra B.
Garten, Marco
Gaus, Lennart
Gauthier, Maxence
Göde, Sebastian
Goethel, Ilja
Glenzer, Siegfried H.
Kluge, Thomas
Kraft, Stephan
Kroll, Florian
Kuntzsch, Michael
Metzkes-Ng, Josefine
Loeser, Markus
Obst-Huebl, Lieselotte
Rehwald, Martin
Schlenvoigt, Hans-Peter
Schoenwaelder, Christopher
Schramm, Ulrich
Siebold, Mathias
Treffert, Franziska
Ziegler, Tim
Zeil, Karl
author_facet Bernert, Constantin
Assenbaum, Stefan
Brack, Florian-Emanuel
Cowan, Thomas E.
Curry, Chandra B.
Garten, Marco
Gaus, Lennart
Gauthier, Maxence
Göde, Sebastian
Goethel, Ilja
Glenzer, Siegfried H.
Kluge, Thomas
Kraft, Stephan
Kroll, Florian
Kuntzsch, Michael
Metzkes-Ng, Josefine
Loeser, Markus
Obst-Huebl, Lieselotte
Rehwald, Martin
Schlenvoigt, Hans-Peter
Schoenwaelder, Christopher
Schramm, Ulrich
Siebold, Mathias
Treffert, Franziska
Ziegler, Tim
Zeil, Karl
author_sort Bernert, Constantin
collection PubMed
description Due to the non-linear nature of relativistic laser induced plasma processes, the development of laser-plasma accelerators requires precise numerical modeling. Especially high intensity laser-solid interactions are sensitive to the temporal laser rising edge and the predictive capability of simulations suffers from incomplete information on the plasma state at the onset of the relativistic interaction. Experimental diagnostics utilizing ultra-fast optical backlighters can help to ease this challenge by providing temporally resolved inside into the plasma density evolution. We present the successful implementation of an off-harmonic optical probe laser setup to investigate the interaction of a high-intensity laser at [Formula: see text] peak intensity with a solid-density cylindrical cryogenic hydrogen jet target of [Formula: see text] diameter as a target test bed. The temporal synchronization of pump and probe laser, spectral filtering and spectrally resolved data of the parasitic plasma self-emission are discussed. The probing technique mitigates detector saturation by self-emission and allowed to record a temporal scan of shadowgraphy data revealing details of the target ionization and expansion dynamics that were so far not accessible for the given laser intensity. Plasma expansion speeds of up to [Formula: see text] followed by full target transparency at [Formula: see text] after the high intensity laser peak are observed. A three dimensional particle-in-cell simulation initiated with the diagnosed target pre-expansion at [Formula: see text] and post processed by ray tracing simulations supports the experimental observations and demonstrates the capability of time resolved optical diagnostics to provide quantitative input and feedback to the numerical treatment within the time frame of the relativistic laser-plasma interaction.
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spelling pubmed-90689282022-05-05 Off-harmonic optical probing of high intensity laser plasma expansion dynamics in solid density hydrogen jets Bernert, Constantin Assenbaum, Stefan Brack, Florian-Emanuel Cowan, Thomas E. Curry, Chandra B. Garten, Marco Gaus, Lennart Gauthier, Maxence Göde, Sebastian Goethel, Ilja Glenzer, Siegfried H. Kluge, Thomas Kraft, Stephan Kroll, Florian Kuntzsch, Michael Metzkes-Ng, Josefine Loeser, Markus Obst-Huebl, Lieselotte Rehwald, Martin Schlenvoigt, Hans-Peter Schoenwaelder, Christopher Schramm, Ulrich Siebold, Mathias Treffert, Franziska Ziegler, Tim Zeil, Karl Sci Rep Article Due to the non-linear nature of relativistic laser induced plasma processes, the development of laser-plasma accelerators requires precise numerical modeling. Especially high intensity laser-solid interactions are sensitive to the temporal laser rising edge and the predictive capability of simulations suffers from incomplete information on the plasma state at the onset of the relativistic interaction. Experimental diagnostics utilizing ultra-fast optical backlighters can help to ease this challenge by providing temporally resolved inside into the plasma density evolution. We present the successful implementation of an off-harmonic optical probe laser setup to investigate the interaction of a high-intensity laser at [Formula: see text] peak intensity with a solid-density cylindrical cryogenic hydrogen jet target of [Formula: see text] diameter as a target test bed. The temporal synchronization of pump and probe laser, spectral filtering and spectrally resolved data of the parasitic plasma self-emission are discussed. The probing technique mitigates detector saturation by self-emission and allowed to record a temporal scan of shadowgraphy data revealing details of the target ionization and expansion dynamics that were so far not accessible for the given laser intensity. Plasma expansion speeds of up to [Formula: see text] followed by full target transparency at [Formula: see text] after the high intensity laser peak are observed. A three dimensional particle-in-cell simulation initiated with the diagnosed target pre-expansion at [Formula: see text] and post processed by ray tracing simulations supports the experimental observations and demonstrates the capability of time resolved optical diagnostics to provide quantitative input and feedback to the numerical treatment within the time frame of the relativistic laser-plasma interaction. Nature Publishing Group UK 2022-05-04 /pmc/articles/PMC9068928/ /pubmed/35508489 http://dx.doi.org/10.1038/s41598-022-10797-6 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Bernert, Constantin
Assenbaum, Stefan
Brack, Florian-Emanuel
Cowan, Thomas E.
Curry, Chandra B.
Garten, Marco
Gaus, Lennart
Gauthier, Maxence
Göde, Sebastian
Goethel, Ilja
Glenzer, Siegfried H.
Kluge, Thomas
Kraft, Stephan
Kroll, Florian
Kuntzsch, Michael
Metzkes-Ng, Josefine
Loeser, Markus
Obst-Huebl, Lieselotte
Rehwald, Martin
Schlenvoigt, Hans-Peter
Schoenwaelder, Christopher
Schramm, Ulrich
Siebold, Mathias
Treffert, Franziska
Ziegler, Tim
Zeil, Karl
Off-harmonic optical probing of high intensity laser plasma expansion dynamics in solid density hydrogen jets
title Off-harmonic optical probing of high intensity laser plasma expansion dynamics in solid density hydrogen jets
title_full Off-harmonic optical probing of high intensity laser plasma expansion dynamics in solid density hydrogen jets
title_fullStr Off-harmonic optical probing of high intensity laser plasma expansion dynamics in solid density hydrogen jets
title_full_unstemmed Off-harmonic optical probing of high intensity laser plasma expansion dynamics in solid density hydrogen jets
title_short Off-harmonic optical probing of high intensity laser plasma expansion dynamics in solid density hydrogen jets
title_sort off-harmonic optical probing of high intensity laser plasma expansion dynamics in solid density hydrogen jets
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9068928/
https://www.ncbi.nlm.nih.gov/pubmed/35508489
http://dx.doi.org/10.1038/s41598-022-10797-6
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