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Extraction of enhanced, ultrashort laser pulses from a passive 10-MHz stack-and-dump cavity

Periodic dumping of ultrashort laser pulses from a passive multi-MHz repetition-rate enhancement cavity is a promising route towards multi-kHz repetition-rate pulses with Joule-level energies at an unparalleled average power. Here, we demonstrate this so-called stack-and-dump scheme with a 30-m-long...

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Autores principales: Breitkopf, Sven, Wunderlich, Stefano, Eidam, Tino, Shestaev, Evgeny, Holzberger, Simon, Gottschall, Thomas, Carstens, Henning, Tünnermann, Andreas, Pupeza, Ioachim, Limpert, Jens
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7154790/
https://www.ncbi.nlm.nih.gov/pubmed/32336883
http://dx.doi.org/10.1007/s00340-016-6574-x
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author Breitkopf, Sven
Wunderlich, Stefano
Eidam, Tino
Shestaev, Evgeny
Holzberger, Simon
Gottschall, Thomas
Carstens, Henning
Tünnermann, Andreas
Pupeza, Ioachim
Limpert, Jens
author_facet Breitkopf, Sven
Wunderlich, Stefano
Eidam, Tino
Shestaev, Evgeny
Holzberger, Simon
Gottschall, Thomas
Carstens, Henning
Tünnermann, Andreas
Pupeza, Ioachim
Limpert, Jens
author_sort Breitkopf, Sven
collection PubMed
description Periodic dumping of ultrashort laser pulses from a passive multi-MHz repetition-rate enhancement cavity is a promising route towards multi-kHz repetition-rate pulses with Joule-level energies at an unparalleled average power. Here, we demonstrate this so-called stack-and-dump scheme with a 30-m-long cavity. Using an acousto-optic modulator, we extract pulses of 0.16 mJ at 30-kHz repetition rate, corresponding to 65 stacked input pulses, representing an improvement in three orders of magnitude over previously extracted pulse energies. The ten times longer cavity affords three essential benefits over former approaches. First, the time between subsequent pulses is increased to 100 ns, relaxing the requirements on the switch. Second, it allows for the stacking of strongly stretched pulses (here from 800 fs to 1.5 ns), thus mitigating nonlinear effects in the cavity optics. Third, the choice of a long cavity offers increased design flexibility with regard to thermal robustness, which will be crucial for future power scaling. The herein presented results constitute a necessary step towards stack-and-dump systems providing access to unprecedented laser parameter regimes.
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spelling pubmed-71547902020-04-23 Extraction of enhanced, ultrashort laser pulses from a passive 10-MHz stack-and-dump cavity Breitkopf, Sven Wunderlich, Stefano Eidam, Tino Shestaev, Evgeny Holzberger, Simon Gottschall, Thomas Carstens, Henning Tünnermann, Andreas Pupeza, Ioachim Limpert, Jens Appl Phys B Article Periodic dumping of ultrashort laser pulses from a passive multi-MHz repetition-rate enhancement cavity is a promising route towards multi-kHz repetition-rate pulses with Joule-level energies at an unparalleled average power. Here, we demonstrate this so-called stack-and-dump scheme with a 30-m-long cavity. Using an acousto-optic modulator, we extract pulses of 0.16 mJ at 30-kHz repetition rate, corresponding to 65 stacked input pulses, representing an improvement in three orders of magnitude over previously extracted pulse energies. The ten times longer cavity affords three essential benefits over former approaches. First, the time between subsequent pulses is increased to 100 ns, relaxing the requirements on the switch. Second, it allows for the stacking of strongly stretched pulses (here from 800 fs to 1.5 ns), thus mitigating nonlinear effects in the cavity optics. Third, the choice of a long cavity offers increased design flexibility with regard to thermal robustness, which will be crucial for future power scaling. The herein presented results constitute a necessary step towards stack-and-dump systems providing access to unprecedented laser parameter regimes. Springer Berlin Heidelberg 2016-12-02 2016 /pmc/articles/PMC7154790/ /pubmed/32336883 http://dx.doi.org/10.1007/s00340-016-6574-x Text en © The Author(s) 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Article
Breitkopf, Sven
Wunderlich, Stefano
Eidam, Tino
Shestaev, Evgeny
Holzberger, Simon
Gottschall, Thomas
Carstens, Henning
Tünnermann, Andreas
Pupeza, Ioachim
Limpert, Jens
Extraction of enhanced, ultrashort laser pulses from a passive 10-MHz stack-and-dump cavity
title Extraction of enhanced, ultrashort laser pulses from a passive 10-MHz stack-and-dump cavity
title_full Extraction of enhanced, ultrashort laser pulses from a passive 10-MHz stack-and-dump cavity
title_fullStr Extraction of enhanced, ultrashort laser pulses from a passive 10-MHz stack-and-dump cavity
title_full_unstemmed Extraction of enhanced, ultrashort laser pulses from a passive 10-MHz stack-and-dump cavity
title_short Extraction of enhanced, ultrashort laser pulses from a passive 10-MHz stack-and-dump cavity
title_sort extraction of enhanced, ultrashort laser pulses from a passive 10-mhz stack-and-dump cavity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7154790/
https://www.ncbi.nlm.nih.gov/pubmed/32336883
http://dx.doi.org/10.1007/s00340-016-6574-x
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