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Mainz 2026 – wissenschaftliches Programm

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Q: Fachverband Quantenoptik und Photonik

Q 40: Poster – Photonics

Mittwoch, 4. März 2026, 17:00–19:00, Philo 1. OG

Nanophotonics; 3D Printing; Microscopy; Biophotonics; General Photonics

17:00 Q 40.1 Photonic integrated top-hat beam profiler for multi-ion clock application — •Matthias Ludwig, Carl-Frederik Grimpe, Guochun Du, Fatemeh Salahshoori, André Kulosa, Elena Jordan, and Tanja E. Mehlstäubler
17:00 Q 40.2 Fabrication approach for all-diamond nano-cavity structures in submicron membranes — •Kilian Mark, Jan Fait, and Christoph Becher
17:00 Q 40.3 Passive photonic structures in transition metal dichalcogenides for integrated quantum photonics — •Anita Kohlwes, Zengya Li, Timur Shegai, and Doris Reiter
17:00 Q 40.4 Cryogenic-Temperature ODMR Analysis of Nitrogen-Vacancy Centers in Nanodiamonds — •Wanrong Li, Keisuke Oshimi, Masazumi Fujiwara, and Oliver Benson
17:00 Q 40.5 Light modulation in electrically switchable metasurfaces using organic electro-optical materials — •Paul Bingel, Monika Ubl, Masis Sirim, Patrick Kern, Stefan Bräse, and Harald Gießen
17:00 Q 40.6 Enhancing Light-Matter Interactions In Integrated Platforms — •Malaika Waheed, Christian Koller, and Sarah Margaretha Bayer-Skoff
17:00 Q 40.7 Optical feedback for the photo-induced deformation of thin films — •Kenneth Lütticke and Carsten Henkel
17:00 Q 40.8 Polarization measurements of nanophotonic outcouplers for quantum technology applications — •Nasimalsadat Mousavi Savadkouhi, Carl-Frederik Grimpe, Guochun Du, Steffen Sauer, Anastasiia Lüßmann-Sorokina, Afonso Alcape Meyer, Liam Shelling Neto, Elena Jordan, Tanja E. Mehlstäubler, and Stefanie Kroker
17:00 Q 40.9 Simulation Framework for Athermal Silicon Nitride Waveguide Design — •Ekin Bircan Bosdurmaz, Max de Jager, and Pepijn W. H. Pinkse
17:00 Q 40.10 Fabrication of High Quality Factor Resonators in Ta2O5 for Integrated Nonlinear Photonics — •Jan Wulkotte, David Lemli, Tim Buskasper, and Carsten Schuck
17:00 Q 40.11 Enhanced light matter interaction for quantum technologies and sensing applications — •Adam Lafferty, Raphael Neubacher, Helmut Hörner, Malaika Waheed, Ambika Shorny, Fritz Steiner, Alex Götz, Adarsh Prasad, Stefan Walser, and Sarah M. Skoff
17:00 Q 40.12 Investigating Non-Hermiticity in Photonic Waveguides With Higher Modes — •Sabrina Hammel, Julian Schulz, and Christina Jörg
17:00 Q 40.13 The SSH model in non-dimerized chains via multimode waveguides — •Ian Heil, Julian Schulz, and Christina Jörg
17:00 Q 40.14 Integrated Optics for efficient Fluorescent collection for single NV centers — •Robert Bruss, Lucas Kirchbach, and Andreas Stute
17:00 Q 40.15 Refractive index characterization and luminescence spectra of photoresists for 3D printing — •Leonardo Guimaraes, Leander Siegle, and Harald Giessen
17:00 Q 40.16 Complex-structured beam produced by modulated phase mask — •Zihao Zhang and Harald Giessen
17:00 Q 40.17 Mid- to long-wave-infrared nanoscopy with lanthanide transducers — •Junyu Guan, Hanyu Zhang, Yanan Li, Kun Huang, and Kangwei Xia
17:00 Q 40.18 Machine learning driven texture analysis of laser speckle imaging for early breast cancer detection — •Doaa Youssef
17:00 Q 40.19 Fiber Fabry-Perot Cavities: Design, Arrays, and Interfaces — •Jana Blechmann, Daniel Stachanow, Lukas Tenbrake, Florian Giefer, Gian-Marco Schnueriger, Hannes Pfeifer, and Sebastian Hofferberth
17:00 Q 40.20 Rydberg quantum optics based on integrated photonic waveguides immersed in a hot atomic vapor — •Alexandra Köpf, Annika Belz, Xiaoyu Cheng, Benyamin Shnirman, Hadiseh Alaeian, Harald Kübler, Robert Löw, and Tilman Pfau
17:00 Q 40.21 Simulations of inverse taper structures for efficient edge coupling in TFLN — •Micha Jonas, Filip Sosnicki, Laura Padberg, Harald Herrmann, and Christine Silberhorn
17:00 Q 40.22 Simulating Surface Roughness Effects on TIR Coupling Losses in Thermally Annealed SLE Structures — •Thilo Danner, Veronica Montoya, Patrick Hildebrand, Yassin Nasr, Andreas Michalowski, and Tobias Menold
17:00 Q 40.23 Simulation of light guiding and coupling in direct laser-written integrated optical elements — •Veronica Montoya, Thilo Danner, Patrick Hildebrand, Yassin Nasr, Andreas Michalowski, and Tobias Menold
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