Automatization Steps for Laser Direct Writing

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

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OriginalspracheEnglisch
Titel des Sammelwerks2023 23rd International Conference on Transparent Optical Networks
UntertitelICTON
Herausgeber/-innenMarek Jaworski, Marian Marciniak
Herausgeber (Verlag)IEEE Computer Society
ISBN (elektronisch)9798350303032
ISBN (Print)979-8-3503-0304-9
PublikationsstatusVeröffentlicht - 2023
Veranstaltung23rd International Conference on Transparent Optical Networks, ICTON 2023 - Bucharest, Rumänien
Dauer: 2 Juli 20236 Juli 2023

Publikationsreihe

NameInternational Conference on Transparent Optical Networks
Band2023-July
ISSN (elektronisch)2162-7339

Abstract

Two-photon polymerisation (TPP) is an additive manufacturing tool based on laser direct writing with sub-wavelength resolution. It has received enormous attention in recent years because it enables the production of precision polymer micro-optics without post-processing steps as well as three-dimensional diffractive optical structures. However, TPP is still a laboratory-level technology which requires elaborate and time-consuming alignment steps. This paper will present our approach to automatize many of these steps.

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Automatization Steps for Laser Direct Writing. / Caspary, Reinhard; Zheng, Lei; Günther, Axel et al.
2023 23rd International Conference on Transparent Optical Networks: ICTON. Hrsg. / Marek Jaworski; Marian Marciniak. IEEE Computer Society, 2023. (International Conference on Transparent Optical Networks; Band 2023-July).

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Caspary, R, Zheng, L, Günther, A & Roth, B 2023, Automatization Steps for Laser Direct Writing. in M Jaworski & M Marciniak (Hrsg.), 2023 23rd International Conference on Transparent Optical Networks: ICTON. International Conference on Transparent Optical Networks, Bd. 2023-July, IEEE Computer Society, 23rd International Conference on Transparent Optical Networks, ICTON 2023, Bucharest, Rumänien, 2 Juli 2023. https://doi.org/10.1109/ICTON59386.2023.10207338
Caspary, R., Zheng, L., Günther, A., & Roth, B. (2023). Automatization Steps for Laser Direct Writing. In M. Jaworski, & M. Marciniak (Hrsg.), 2023 23rd International Conference on Transparent Optical Networks: ICTON (International Conference on Transparent Optical Networks; Band 2023-July). IEEE Computer Society. https://doi.org/10.1109/ICTON59386.2023.10207338
Caspary R, Zheng L, Günther A, Roth B. Automatization Steps for Laser Direct Writing. in Jaworski M, Marciniak M, Hrsg., 2023 23rd International Conference on Transparent Optical Networks: ICTON. IEEE Computer Society. 2023. (International Conference on Transparent Optical Networks). doi: 10.1109/ICTON59386.2023.10207338
Caspary, Reinhard ; Zheng, Lei ; Günther, Axel et al. / Automatization Steps for Laser Direct Writing. 2023 23rd International Conference on Transparent Optical Networks: ICTON. Hrsg. / Marek Jaworski ; Marian Marciniak. IEEE Computer Society, 2023. (International Conference on Transparent Optical Networks).
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title = "Automatization Steps for Laser Direct Writing",
abstract = "Two-photon polymerisation (TPP) is an additive manufacturing tool based on laser direct writing with sub-wavelength resolution. It has received enormous attention in recent years because it enables the production of precision polymer micro-optics without post-processing steps as well as three-dimensional diffractive optical structures. However, TPP is still a laboratory-level technology which requires elaborate and time-consuming alignment steps. This paper will present our approach to automatize many of these steps.",
keywords = "automatization, camera alignment, focus detection, laser direct writing, two-photon polymerization",
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T1 - Automatization Steps for Laser Direct Writing

AU - Caspary, Reinhard

AU - Zheng, Lei

AU - Günther, Axel

AU - Roth, Bernhard

N1 - Funding Information: This work was funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) under Germany’s Excellence Strategy within the Cluster of Excellence PhoenixD (EXC 2122, Project ID 390833453).

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N2 - Two-photon polymerisation (TPP) is an additive manufacturing tool based on laser direct writing with sub-wavelength resolution. It has received enormous attention in recent years because it enables the production of precision polymer micro-optics without post-processing steps as well as three-dimensional diffractive optical structures. However, TPP is still a laboratory-level technology which requires elaborate and time-consuming alignment steps. This paper will present our approach to automatize many of these steps.

AB - Two-photon polymerisation (TPP) is an additive manufacturing tool based on laser direct writing with sub-wavelength resolution. It has received enormous attention in recent years because it enables the production of precision polymer micro-optics without post-processing steps as well as three-dimensional diffractive optical structures. However, TPP is still a laboratory-level technology which requires elaborate and time-consuming alignment steps. This paper will present our approach to automatize many of these steps.

KW - automatization

KW - camera alignment

KW - focus detection

KW - laser direct writing

KW - two-photon polymerization

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DO - 10.1109/ICTON59386.2023.10207338

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AN - SCOPUS:85169477182

SN - 979-8-3503-0304-9

T3 - International Conference on Transparent Optical Networks

BT - 2023 23rd International Conference on Transparent Optical Networks

A2 - Jaworski, Marek

A2 - Marciniak, Marian

PB - IEEE Computer Society

T2 - 23rd International Conference on Transparent Optical Networks, ICTON 2023

Y2 - 2 July 2023 through 6 July 2023

ER -

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