Johannes Strauß

Scopus Author ID: 55235288300


Lehrstuhl für Photonische Technologien

Publications (Download BibTeX)

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Rasch, M., Roider, C., Kohl, S., Strauß, J., Maurer, N., Nagulin, K.Y., & Schmidt, M. (2019). Shaped laser beam profiles for heat conduction welding of aluminium-copper alloys. Optics and Lasers in Engineering, 115, 179-189.
Sun, B., Salter, P., Roider, C., Jesacher, A., Strauß, J., Heberle, J.,... Booth, M.J. (2018). Four-dimensional light shaping: manipulating ultrafast spatiotemporal foci in space and time. Light: Science & Applications, 7.
Strauß, J., Heberle, J., & Schmidt, M. (2018). Laserstrahlformung mit Akustooptik. Mikroproduktion, 48-52.
Strauß, J., Heberle, J., & Schmidt, M. (2018). Laserstrahlformung mit Akustooptik. Mikroproduktion, 05/18, 48-52.
Häfner, T., Strauß, J., Roider, C., Heberle, J., & Schmidt, M. (2018). Tailored laser beam shaping for efficient and accurate microstructuring. Applied Physics A: Materials Science and Processing, 124(111).
Strauß, J., Baum, M., Alexeev, I., & Schmidt, M. (2017). Optical Trap Assisted Nanopatterning: Process Parallelization and Dynamic Structure Generation. Journal of Laser Micro Nanoengineering, 12(2), 86-90.
Heberle, J., Bechtold, P., Strauß, J., & Schmidt, M. (2016). Electro-optic and acousto-optic laser beam scanners. In Klotzbach, Udo; Washio, Kunihiko; Arnold, Craig B. (Eds.), Laser-based Micro- and Nanoprocessing X, Proc. SPIE 9736 (pp. 97360L-1 - 97360L-10). San Francisco, US: Bellingham, WA: SPIE.
Strauß, J., Häfner, T., Dobler, M., Heberle, J., & Schmidt, M. (2016). Evaluation and Calibration of LCoS SLM for Direct Laser Structuring with Tailored Intensity Distributions. Physics Procedia, 83, 1160-1169.
Alexeev, I., Brehm, E., Nendel, F., Strauß, J., Baum, M., & Schmidt, M. (2016). Fabrication and Application of Phase only Holograms for High Power Laser Beam Shaping. Journal of Laser Micro Nanoengineering, 11(2), 261-265.
Shahmoon, A., Strauß, J., Zafri, H., Schmidt, M., & Zalevsky, Z. (2016). High Resolution Fabrication of Interconnection Lines Using Picosecond Laser and Controlled Deposition of Gold Nanoparticles. Physics Procedia, 83, 188-193.

Last updated on 2019-22-01 at 17:48