Fachaufsätze

Der Arbeitspunkt des Fraunhofer ILT liegt an der vordersten Front technologischer Innovationen. Dies verlangt von uns eine aktive Beteiligung am wissenschaftlichen Diskurs der Laser-Community. Unsere Ingenieure und Wissenschaftler publizieren in Absprache mit unseren Auftraggebern regelmäßig grundlegende und anwendungsspezifische Fachaufsätze. Zahlreiche Grundsteine für neue Entwicklungen im Bereich der Lasertechnik wurden im Fraunhofer ILT gelegt und in entsprechenden Fachaufsätzen dokumentiert.

2025

Baer, P., Cebeci, P., Reiter, M., Giesberts, M., Hoffmann, H.-D.:
Power scaling of holmium-doped fiber amplifiers with narrow linewidth, low noise, and linear polarization. Proceedings Volume 13342, Fiber Lasers XXII: Technology and Systems; 133420A (2025)
https://doi.org/10.1117/12.3042926

Bekemeier, S., Caldeira Rêgo, C.R., Mai, H. L., Saikia, U., Waseda, O., Apel, M., Arendt, F., Aschemann, A., Bayerlein, B., Courant, R.,  Dziwis, G., Fuchs, F., Giese, U., Junghanns, K., Kamal, M., Koschmieder, L.,  Leineweber, S., Luger, M., Lukas, M., Maas, J., Mertens, J., Mieller, B., Overmeyer, L., Pirch, N.(...):
Advancing Digital Transformation in Material Science: The Role of Workflows Within the MaterialDigital Initiative.
ADVANCED ENGINEERING MATERIALS, Early View, 2402149- (2025)
https://doi.org/10.1002/adem.202402149 (Open Access)

Blume, G., Feise, D., Sahm, A., Hildenstein, P., Werner, N., Zender, J., Wendt, F., Gewers, F., Pearce, E., Ramelow, S., Paschke, K.:
Long wavelength, small quantum interferometer module: shrinking MIR OCT systems via quantum entanglement.
Quantum West, 2025, San Francisco, California, United States.
Proceedings Vol.13392, Quantum Sensing, Imaging, and Precision Metrology III; 133920V (2025)
https://doi.org/10.1117/12.3044313

Brackmann, F., Lang, W., Brosda, M., Olowinsky, A., Boich, R., Gries, T.:
Laser Bonding of Conductive Tracks on Textiles with Adapted Wavelengths for Smart Textile Applications.
Journal of Laser Applications 37(1), 012014- (2025)
https://doi.org/10.2351/7.0001631

Bussek, T., Hofmann, O., Bonhoff, A., Holly, C.:
Computation of spatial intensity distributions for laser powder bed fusion through the solution of an inverse heat conduction problem.
LASE, 2025, San Francisco, California, United States. Proceedings Volume 13354, Laser 3D Manufacturing XII; 1335407, (8 S.), (2025)
https://doi.org/10.1117/12.3043116

Flesch, M., Funke, J.:
The influence of multifunctional dendritic oligomers on material properties for vat polymerization.
Progress in Additive Manufacturing 10, 1763-1770, (2025)
https://doi.org/10.1007/s40964-025-00976-y (Open Access)

Jung, Manuel, Brunner, Tobias, Willenborg, Edgar, Vedder, Christian:
Tool-path planning for 2.5D laser polishing of optical lenses.
OPTICS EXPRESS 33(7), 15279-15291 (2025)
https://doi.org/10.1364/OE.551580 (Open Access)

Kind, H., Aden, M., Brackmann, F., Brosda, M., Olowinsky A., Schütze, C., Schumann, O.:
Development of a Laser-based Process to Produce a Hermetically Sealed Contacting Interface for the Encapsulation of Temperature-sensitive Electronic Components.
Journal of Laser Applications 37(1), 012002, (8 S.), (2025)
https://doi.org/10.2351/7.0001550

Onyszkiewicz, D., Maslowski, C., Bonhoff, A., Holly, C.:
Exploration of observation space extensions for reinforcement learning in automated optics design.
OPTO, 2025, San Francisco, California, United States.
Proceedings Volume 13375, AI and Optical Data Sciences VI; 133750T (2025)
https://doi.org/10.1117/12.3043244

Özaydin, O., Kreinest, L., Schüssler, J., Willenborg, E., Bührig-Polaczek, A.:
Examination of the Effect of Chemical Composition on Laser Polished Cast Irons with Spheroidal Graphite.
Archives of Foundry Engineering 2025, 150-158 (2025)
https://doi.org/10.24425/afe.2025.153785 (Open Access)