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Rapid, continuous projection multi-photon 3D printing enabled by spatiotemporal focusing of femtosecond pulses

Engineering and Technology

Rapid, continuous projection multi-photon 3D printing enabled by spatiotemporal focusing of femtosecond pulses

P. Somers, Z. Liang, et al.

Discover a breakthrough in 3D micro/nanostructure fabrication with a high-speed projection multi-photon printing method! This innovative approach, utilizing spatiotemporal focusing for precise layer confinement, is demonstrated by authors Paul Somers, Zihao Liang, Jason E. Johnson, Bryan W. Boudouris, Liang Pan, and Xianfan Xu, achieving remarkable fabrication rates that promise scalability and efficiency in micro/nanofabrication.

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~3 min • Beginner • English
Abstract
There is demand for scaling up 3D printing throughput, especially for the multi-photon 3D printing process that provides sub-micrometer structuring capabilities required in diverse fields. In this work, high-speed projection multi-photon printing is combined with spatiotemporal focusing for fabrication of 3D structures in a rapid, layer-by-layer, and continuous manner. Spatiotemporal focusing confines printing to thin layers, thereby achieving print thicknesses on the micron and sub-micron scale. Through projection of dynamically varying patterns with no pause between patterns, a continuous fabrication process is established. A numerical model for computing spatiotemporal focusing and imaging is also presented which is verified by optical imaging and printing results. Complex 3D structures with smooth features are fabricated, with millimeter scale printing realized at a rate above 10⁻³ mm³ s⁻¹. This method is further scalable, indicating its potential to make fabrications of 3D structures with micro/nanoscale features in a practical time scale a reality.
Publisher
Light: Science & Applications
Published On
Jan 31, 2021
Authors
Paul Somers, Zihao Liang, Jason E. Johnson, Bryan W. Boudouris, Liang Pan, Xianfan Xu
Tags
3D printing
multi-photon printing
spatiotemporal focusing
micro/nanostructures
fabrication rates
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