Modeling and Simulation of a Massively Parallelized Multiphoton Polymerization 3D Microfabrication Process

Author:

Ogor Florie1ORCID,Le Deun Thomas1,Van Elslande Emma2,Tellal Azeddine2,Banyasz Akos2,Flury Manuel3,Heggarty Kevin1

Affiliation:

1. Optics Department Technopole Brest-Iroise IMT-Atlantique 29285 Brest France

2. Laboratoire de Chimie Université Lyon, ENS Lyon, CNRS Université Lyon 1, UMR 5182, 46 Allée d'italie 69384 Lyon France

3. ICube Université de Strasbourg, CNRS, INSA F-67000 Strasbourg France

Abstract

While additive manufacturing based on multiphoton polymerization is currently considered to be a very promising technique for the fabrication of 3D micro‐ and nanostructures, long fabrication times are a major limitation of this approach. Parallelization of the fabrication process is an important technique to overcome this issue. The fabrication process is parallelized by imaging a 1920 × 1080 pixel spatial light modulator into an ultrasensitive triplet–triplet annihilation resist. However, proximity effects between close pixels generate uncontrolled polymerization and make the controlled fabrication of 3D structures difficult. This work models light propagation and chemical interactions in the system to predict fabricated structures with a view to precompensating plot data and improving 3D resolution by performing optical and chemical proximity correction. A simple model gives reasonable predictions of fabricated structures helping us fabricate fully 3D structures in parallel.

Funder

Horizon 2020 Framework Programme

Publisher

Wiley

Subject

Materials Chemistry,Electrical and Electronic Engineering,Surfaces, Coatings and Films,Surfaces and Interfaces,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

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