Partially coherent UV–VIS light generation in photonic crystal fiber using femtosecond pulses
Light generated in optical fibers due to various nonlinear processes often has a broad spectrum and is commonly considered as a potentially convenient source of seed for tunable wavelength laser systems and many other applications. The nonlinear processes usually considered when discussing this spec...
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2021
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oai:doaj.org-article:ca82fa12c1ef4c139c6a28ab650187c82021-11-18T04:48:14ZPartially coherent UV–VIS light generation in photonic crystal fiber using femtosecond pulses2211-379710.1016/j.rinp.2021.104965https://doaj.org/article/ca82fa12c1ef4c139c6a28ab650187c82021-12-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2211379721009803https://doaj.org/toc/2211-3797Light generated in optical fibers due to various nonlinear processes often has a broad spectrum and is commonly considered as a potentially convenient source of seed for tunable wavelength laser systems and many other applications. The nonlinear processes usually considered when discussing this spectrum broadening are coherent.In this paper we present experimental and theoretical investigation of a partially coherent nonlinear phenomenon occurring at the same time — ultraviolet–visible light (375 nm–500 nm) generation in a short photonic crystal fiber pumped by ∼110fs duration and 1028 nm wavelength pulses.Miglė KuliešaitėVygandas JarutisJokūbas PimpėJulius VengelisElsevierarticlePhotonic crystal fiberUV–VIS light generationFemtosecond pulsesNonlinear opticsPhysicsQC1-999ENResults in Physics, Vol 31, Iss , Pp 104965- (2021) |
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Photonic crystal fiber UV–VIS light generation Femtosecond pulses Nonlinear optics Physics QC1-999 |
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Photonic crystal fiber UV–VIS light generation Femtosecond pulses Nonlinear optics Physics QC1-999 Miglė Kuliešaitė Vygandas Jarutis Jokūbas Pimpė Julius Vengelis Partially coherent UV–VIS light generation in photonic crystal fiber using femtosecond pulses |
description |
Light generated in optical fibers due to various nonlinear processes often has a broad spectrum and is commonly considered as a potentially convenient source of seed for tunable wavelength laser systems and many other applications. The nonlinear processes usually considered when discussing this spectrum broadening are coherent.In this paper we present experimental and theoretical investigation of a partially coherent nonlinear phenomenon occurring at the same time — ultraviolet–visible light (375 nm–500 nm) generation in a short photonic crystal fiber pumped by ∼110fs duration and 1028 nm wavelength pulses. |
format |
article |
author |
Miglė Kuliešaitė Vygandas Jarutis Jokūbas Pimpė Julius Vengelis |
author_facet |
Miglė Kuliešaitė Vygandas Jarutis Jokūbas Pimpė Julius Vengelis |
author_sort |
Miglė Kuliešaitė |
title |
Partially coherent UV–VIS light generation in photonic crystal fiber using femtosecond pulses |
title_short |
Partially coherent UV–VIS light generation in photonic crystal fiber using femtosecond pulses |
title_full |
Partially coherent UV–VIS light generation in photonic crystal fiber using femtosecond pulses |
title_fullStr |
Partially coherent UV–VIS light generation in photonic crystal fiber using femtosecond pulses |
title_full_unstemmed |
Partially coherent UV–VIS light generation in photonic crystal fiber using femtosecond pulses |
title_sort |
partially coherent uv–vis light generation in photonic crystal fiber using femtosecond pulses |
publisher |
Elsevier |
publishDate |
2021 |
url |
https://doaj.org/article/ca82fa12c1ef4c139c6a28ab650187c8 |
work_keys_str_mv |
AT miglekuliesaite partiallycoherentuvvislightgenerationinphotoniccrystalfiberusingfemtosecondpulses AT vygandasjarutis partiallycoherentuvvislightgenerationinphotoniccrystalfiberusingfemtosecondpulses AT jokubaspimpe partiallycoherentuvvislightgenerationinphotoniccrystalfiberusingfemtosecondpulses AT juliusvengelis partiallycoherentuvvislightgenerationinphotoniccrystalfiberusingfemtosecondpulses |
_version_ |
1718425066354507776 |