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3D holographic light shaping for advanced multiphoton polymerization

$ 8.50

4.5 (421) In stock

A three-dimensional (3D) holographic focal volume engineering method is proposed and employed for advanced multiphoton polymerization. A large number of foci are closely positioned in space according to a designed geometry, avoiding undesired interference effects by phase engineering. Through all-optical micro-displacements in space, the discrete foci bundle leads to the realization of complete 3D arbitrary structures. The microstructures are fabricated by direct laser writing without additional optical or mechanical motion support. We report a 20-times faster fabrication time in comparison to point-by-point laser polymerization techniques.

Two-photon polymerization with optimized spatial light modulator

Laser nanophotonics group - Faculty of Physics

Femtosecond laser two-photon polymerization three-dimensional

Fabrication of 3D computer-generated hologram inside glass by

Recent progress in functionalized plastic 3D printing in creation

Two-Photon Polymerization - Microlight3D

Woodpile photonic crystals: (a) the whole structure, (b) detail

Fabrication of 3D computer-generated hologram inside glass by

High-aspect 3D two-photon polymerization structuring with widened

Maria MANOUSIDAKI, PostDoc Position

Woodpile photonic crystals: (a) the whole structure, (b) detail

Schematic diagram of holographic beam shaping.

Multi-material multi-photon 3D laser micro- and nanoprinting

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