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Mode-locked diode laser-based two-photon polymerisation

  • In this Letter, the authors present the construction of three-dimensional microstructures by two-photon polymerisation induced by ultrashort pulses of a mode-locked diode laser. The ultrafast light source is based on a diode laser with segmented metallisation to realise a waveguide integrated saturable absorber. It is subsequently amplified and compressed resulting in ultrashort laser pulses of 440 fs length and average output power of 160 mW at a fundamental repetition rate of 383.1 MHz. These pulses are coupled into a customised two-photon polymerisation setup. A series of suspended lines were fabricated between support cuboids for testing the process behaviour. A 3D structure with complex features was polymerised to demonstrate the high potential for mode-locked diode lasers in the field of direct laser writing.
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https://doi.org/10.1049/el.2019.2385

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Author:N Surkamp, G Zyla, Evgeny L Gurevich, A Klehr, A Knigge, Andreas Ostendorf, MR Hofmann
DOI:https://doi.org/10.1049/el.2019.2385
ISSN:0013-5194
Parent Title (English):Electronics Letters
Document Type:Article
Language:English
Date of Publication (online):2021/03/10
Year of first Publication:2020
Provider of the Publication Server:FH Münster - University of Applied Sciences
Release Date:2021/03/10
Tag:laser mode locking; polymerisation; optical waveguides; high-speed optical techniques; two-photon processes; optical pulse compression; optical saturable absorption; integrated optics; semiconductor lasers
Volume:56/2020
Issue:2
First Page:91
Last Page:93
Faculties:Physikingenieurwesen (PHY)
Publication list:Gurevich, Evgeny
Licence (German):License LogoBibliographische Daten