Holographic Two-Photon Induced Photopolymerization

Metadata Updated: March 8, 2017

Holographic two-photon-induced photopolymerization (HTPIP) offers distinct advantages over conventional one-photon-induced photopolymerization and current techniques in two-photon-induced photopolymerization (TPIP). Conventional one-photon polymerization has been used extensively in high precision processes such as photolithography, microelectronics fabrication and MEMS processing and is, by and large, a two dimensional process. Current two-photon techniques, while offering the capability for three-dimensional processing and high complexity microfabrication, still require sequenitial rastering to induce polymerization. Using a two-photon holographic configuration, HTPIP offers the advantage of three-dimensional processing like conventional TPIP yet polymerization is achieved by parallel holographic exposure as opposed to beam rastering. As a technique, HTPIP shows tremendous potential for 3D patterning of microstructures such as optical data storage devices, multi-layer microfabrication and photonic bandgap structures.

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Public: This dataset is intended for public access and use. License: No license information was provided. If this work was prepared by an officer or employee of the United States government as part of that person's official duties it is considered a U.S. Government Work.

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Metadata Created Date March 8, 2017
Metadata Updated Date March 8, 2017

Metadata Source

Harvested from Federal Laboratory Consortium Data.json

Additional Metadata

Resource Type Dataset
Metadata Created Date March 8, 2017
Metadata Updated Date March 8, 2017
Publisher Federal Laboratory Consortium
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