Advances in Modeling and Optimization for Two-Photon Lithography
Abstract
Advances in Modeling and Optimization for Two-Photon Lithography
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Valeriia Sedova, Florie Ogor, Joёl Rovera, Odysseas Tsilipakos, Lisa Lemberg, Kevin Heggarty, Andreas Erdmann — Advances in Modeling and Optimization for Two-Photon Lithography
- SPIE Optical Systems Design 2024 - Motivation 25.11.2025 © Fraunhofer IISBPage 2 Example of 2D metasurfaces Source: https://vosdogs.com/harvard-scientists-monitor-points-of-darkness-for-remote-sensing-and-covert-sensingapplications Source: Princeton University Source: FABulous proposal Source: Edinburg Instruments
- SPIE Optical Systems Design 2024 - Outline 25.11.2025 © Fraunhofer IISBPage 3 Model Description Threshold model Compact model Full model of polymerization Application of the models Impact of parameters on voxel shape Model calibration and verification First applications of models towards metasurfaces Conclusion and outlook
- SPIE Optical Systems Design 2024 - Outline 25.11.2025 © Fraunhofer IISBPage 4 Model Description Threshold model Compact model Full model of polymerization Application of the models Impact of parameters on voxel shape Model calibration and verification First applications of models towards metasurfaces Conclusion and outlook
- SPIE Optical Systems Design 2024 - Overview of the models 25.11.2025 © Fraunhofer IISBPage 5 Optical model Generation of point spread function (PSF) within resist Resist model Threshold describes polymerization Exposure kinetics Diffusion of a single species Development of the processed photopolymer Exposure kinetics Temperature profile Diffusion and kinetics of multiple species Presence of quencher Development of the processed polymer A full model of polymerization Compact modelThreshold model
- SPIE Optical Systems Design 2024 - Threshold model 25.11.2025 © Fraunhofer IISBPage 6 power ~ 1 / threshold
- SPIE Optical Systems Design 2024 - Outline 25.11.2025 © Fraunhofer IISBPage 7 Model Description Threshold model Compact model Full model of polymerization Application of the models Impact of parameters on voxel shape Model calibration and verification First applications of models towards metasurfaces Conclusion and outlook
- SPIE Optical Systems Design 2024 - Compact model 25.11.2025 © Fraunhofer IISBPage 8 TPP exposure reaction: 𝑃𝑟𝑜𝑏𝑎𝑏𝑖𝑙𝑖𝑡𝑦 𝑜𝑓 𝑇𝑃𝐴 ∝ 𝐼 𝑃𝐴𝐶 = exp (−𝐼∗ 𝐷 ∗ 𝐶) Fickian diffusion: 𝛿[𝑃𝐴𝐶] 𝛿𝑡 = 𝐷∇[𝑃𝐴𝐶] Development Mack model: 𝑅 = 𝑅(𝑎 + 1)(1 − 𝑀) 𝑎 + (1 − 𝑀)+ 𝑅 𝑎 = 𝑁 + 1 𝑁 − 1 (1 − 𝑀)
- SPIE Optical Systems Design 2024 - Outline 25.11.2025 © Fraunhofer IISBPage 9 Model Description Threshold model Compact model Full model of polymerization Application of the models Impact of parameters on voxel shape Model calibration and verification First applications of models towards metasurfaces Conclusion and outlook
- SPIE Optical Systems Design 2024 - Outline 25.11.2025 © Fraunhofer IISBPage 16 Model Description Threshold model Compact model Full model of polymerization Application of the models Impact of parameters on voxel shape Model calibration and verification First applications of models towards metasurfaces Conclusion and outlook
- SPIE Optical Systems Design 2024 - Experimental data 25.11.2025 © Fraunhofer IISBPage 17
- SPIE Optical Systems Design 2024 - Calibration results – Threshold model 25.11.2025 © Fraunhofer IISBPage 18
- SPIE Optical Systems Design 2024 - Calibration results – Compact model and Full Model of Polymerization 25.11.2025 © Fraunhofer IISBPage 19
- SPIE Optical Systems Design 2024 - 25.11.2025 © Fraunhofer IISBPage 20 Exposure times that were used in the experiment: •1000 µs •100 µs •10 µs •1 µs Interplay between diffusion kinetics and exposure time
- SPIE Optical Systems Design 2024 - Application of model to alternative exposure strategies 25.11.2025 © Fraunhofer IISBPage 21
- SPIE Optical Systems Design 2024 - Outline 25.11.2025 © Fraunhofer IISBPage 22 Model Description Threshold model Compact model Full model of polymerization Application of the models Impact of parameters on voxel shape Model calibration and verification First applications of models towards metasurfaces Conclusion and outlook
- SPIE Optical Systems Design 2024 - First applications of models towards metasurfaces 25.11.2025 © Fraunhofer IISBPage 23 Supercell of an optical metasurface. A: pillars with circular cross-section. B: The design is modified in order to avoid sharp edges. C: Pillars simulated by full polymerization model. Designs A,B: FORTH
- SPIE Optical Systems Design 2024 - Double exposure processes 25.11.2025 © Fraunhofer IISBPage 24
- SPIE Optical Systems Design 2024 - Outline 25.11.2025 © Fraunhofer IISBPage 25 Model Description Threshold model Compact model Full model of polymerization Application of the models Impact of parameters on voxel shape Model calibration and verification First applications of models towards metasurfaces Conclusion and outlook