IGF



NEW PUBLICATION: Space-Based Fabrication of ZBLAN Optical Fibers: A Breakthrough in Microgravity Manufacturing

AUTHORS:

Arat M.A., Djordjevic A., Moser H.A., Schwuchow A., Stepniewski G., Buczynski R., Rao S. D. S., Petersen C.R., Bang O., Wei Y., Wu K., and Ebendorff-Heidepriem H.

ABSTRACT:

ZBLAN, a heavy-metal fluoride glass fiber, achieves demonstrably better transmission in the mid-infrared range compared to silica fibers and is predicted to outperform their optical performance across the ultraviolet to mid-infrared spectrum; however, achieving this potential is hindered by crystallization during terrestrial fabrication. In this study, we leverage the microgravity environment aboard the International Space Station (ISS) to explore conditions that enable high-fidelity fiber drawing with reduced optical loss. We produced ~12 km of ZBLAN fiber on the ISS, marking the first time sufficient space-drawn material is available for comprehensive characterization. An international consortium of 5 organizations evaluated ~2.1 km length of samples with highest diameter uniformity from the produced fibers. Comparative analyses reveal that space-drawn fibers with a step-index core-and-clad structure exhibit lower optical attenuation and enhanced mechanical performance relative to their ground-based counterparts. These results demonstrate that microgravity manufacturing enables high-performance ZBLAN fiber production for near- and mid-infrared applications while opening new opportunities for advanced photonic materials in space-based industry.

Space: Science & Technology, 2026, vol. 6, art. E0572, doi: 10.34133/space.0572


Originally published on - Aug. 25, 2026, 8:06 a.m.
Last update on - Aug. 25, 2026, 8:10 a.m.
Publisher - Sekretariat IGF


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