Cargando…

Proton beam quality enhancement by spectral phase control of a PW-class laser system

We report on experimental investigations of proton acceleration from solid foils irradiated with PW-class laser-pulses, where highest proton cut-off energies were achieved for temporal pulse parameters that varied significantly from those of an ideally Fourier transform limited (FTL) pulse. Controll...

Descripción completa

Detalles Bibliográficos
Autores principales: Ziegler, T., Albach, D., Bernert, C., Bock, S., Brack, F.-E., Cowan, T. E., Dover, N. P., Garten, M., Gaus, L., Gebhardt, R., Goethel, I., Helbig, U., Irman, A., Kiriyama, H., Kluge, T., Kon, A., Kraft, S., Kroll, F., Loeser, M., Metzkes-Ng, J., Nishiuchi, M., Obst-Huebl, L., Püschel, T., Rehwald, M., Schlenvoigt, H.-P., Schramm, U., Zeil, K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8017008/
https://www.ncbi.nlm.nih.gov/pubmed/33795713
http://dx.doi.org/10.1038/s41598-021-86547-x
_version_ 1783673975678697472
author Ziegler, T.
Albach, D.
Bernert, C.
Bock, S.
Brack, F.-E.
Cowan, T. E.
Dover, N. P.
Garten, M.
Gaus, L.
Gebhardt, R.
Goethel, I.
Helbig, U.
Irman, A.
Kiriyama, H.
Kluge, T.
Kon, A.
Kraft, S.
Kroll, F.
Loeser, M.
Metzkes-Ng, J.
Nishiuchi, M.
Obst-Huebl, L.
Püschel, T.
Rehwald, M.
Schlenvoigt, H.-P.
Schramm, U.
Zeil, K.
author_facet Ziegler, T.
Albach, D.
Bernert, C.
Bock, S.
Brack, F.-E.
Cowan, T. E.
Dover, N. P.
Garten, M.
Gaus, L.
Gebhardt, R.
Goethel, I.
Helbig, U.
Irman, A.
Kiriyama, H.
Kluge, T.
Kon, A.
Kraft, S.
Kroll, F.
Loeser, M.
Metzkes-Ng, J.
Nishiuchi, M.
Obst-Huebl, L.
Püschel, T.
Rehwald, M.
Schlenvoigt, H.-P.
Schramm, U.
Zeil, K.
author_sort Ziegler, T.
collection PubMed
description We report on experimental investigations of proton acceleration from solid foils irradiated with PW-class laser-pulses, where highest proton cut-off energies were achieved for temporal pulse parameters that varied significantly from those of an ideally Fourier transform limited (FTL) pulse. Controlled spectral phase modulation of the driver laser by means of an acousto-optic programmable dispersive filter enabled us to manipulate the temporal shape of the last picoseconds around the main pulse and to study the effect on proton acceleration from thin foil targets. The results show that applying positive third order dispersion values to short pulses is favourable for proton acceleration and can lead to maximum energies of 70 MeV in target normal direction at 18 J laser energy for thin plastic foils, significantly enhancing the maximum energy compared to ideally compressed FTL pulses. The paper further proves the robustness and applicability of this enhancement effect for the use of different target materials and thicknesses as well as laser energy and temporal intensity contrast settings. We demonstrate that application relevant proton beam quality was reliably achieved over many months of operation with appropriate control of spectral phase and temporal contrast conditions using a state-of-the-art high-repetition rate PW laser system.
format Online
Article
Text
id pubmed-8017008
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-80170082021-04-07 Proton beam quality enhancement by spectral phase control of a PW-class laser system Ziegler, T. Albach, D. Bernert, C. Bock, S. Brack, F.-E. Cowan, T. E. Dover, N. P. Garten, M. Gaus, L. Gebhardt, R. Goethel, I. Helbig, U. Irman, A. Kiriyama, H. Kluge, T. Kon, A. Kraft, S. Kroll, F. Loeser, M. Metzkes-Ng, J. Nishiuchi, M. Obst-Huebl, L. Püschel, T. Rehwald, M. Schlenvoigt, H.-P. Schramm, U. Zeil, K. Sci Rep Article We report on experimental investigations of proton acceleration from solid foils irradiated with PW-class laser-pulses, where highest proton cut-off energies were achieved for temporal pulse parameters that varied significantly from those of an ideally Fourier transform limited (FTL) pulse. Controlled spectral phase modulation of the driver laser by means of an acousto-optic programmable dispersive filter enabled us to manipulate the temporal shape of the last picoseconds around the main pulse and to study the effect on proton acceleration from thin foil targets. The results show that applying positive third order dispersion values to short pulses is favourable for proton acceleration and can lead to maximum energies of 70 MeV in target normal direction at 18 J laser energy for thin plastic foils, significantly enhancing the maximum energy compared to ideally compressed FTL pulses. The paper further proves the robustness and applicability of this enhancement effect for the use of different target materials and thicknesses as well as laser energy and temporal intensity contrast settings. We demonstrate that application relevant proton beam quality was reliably achieved over many months of operation with appropriate control of spectral phase and temporal contrast conditions using a state-of-the-art high-repetition rate PW laser system. Nature Publishing Group UK 2021-04-01 /pmc/articles/PMC8017008/ /pubmed/33795713 http://dx.doi.org/10.1038/s41598-021-86547-x Text en © The Author(s) 2021 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/.
spellingShingle Article
Ziegler, T.
Albach, D.
Bernert, C.
Bock, S.
Brack, F.-E.
Cowan, T. E.
Dover, N. P.
Garten, M.
Gaus, L.
Gebhardt, R.
Goethel, I.
Helbig, U.
Irman, A.
Kiriyama, H.
Kluge, T.
Kon, A.
Kraft, S.
Kroll, F.
Loeser, M.
Metzkes-Ng, J.
Nishiuchi, M.
Obst-Huebl, L.
Püschel, T.
Rehwald, M.
Schlenvoigt, H.-P.
Schramm, U.
Zeil, K.
Proton beam quality enhancement by spectral phase control of a PW-class laser system
title Proton beam quality enhancement by spectral phase control of a PW-class laser system
title_full Proton beam quality enhancement by spectral phase control of a PW-class laser system
title_fullStr Proton beam quality enhancement by spectral phase control of a PW-class laser system
title_full_unstemmed Proton beam quality enhancement by spectral phase control of a PW-class laser system
title_short Proton beam quality enhancement by spectral phase control of a PW-class laser system
title_sort proton beam quality enhancement by spectral phase control of a pw-class laser system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8017008/
https://www.ncbi.nlm.nih.gov/pubmed/33795713
http://dx.doi.org/10.1038/s41598-021-86547-x
work_keys_str_mv AT zieglert protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT albachd protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT bernertc protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT bocks protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT brackfe protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT cowante protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT dovernp protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT gartenm protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT gausl protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT gebhardtr protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT goetheli protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT helbigu protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT irmana protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT kiriyamah protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT kluget protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT kona protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT krafts protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT krollf protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT loeserm protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT metzkesngj protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT nishiuchim protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT obsthuebll protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT puschelt protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT rehwaldm protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT schlenvoigthp protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT schrammu protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem
AT zeilk protonbeamqualityenhancementbyspectralphasecontrolofapwclasslasersystem