UV 20W-class single-mode nanosecond pulse delivery using a vacuum-free/ambient air inhibited-coupling hollow-core fiber

Author:

LEROI FLORIAN1,GÉRÔME FRÉDÉRIC2,DIDIERJEAN JULIEN3,SABY JULIEN3,BENABID FETAH2,BOULLET JOHAN1

Affiliation:

1. ALPhANOV, Institut d'optique d'Aquitaine

2. CNRS UMR 7252, University of Limoges

3. BLOOM Lasers, Cité de la Photonique

Abstract

Abstract Silica fibers have been successful used to deliver high-power high-energy laser beam in the near-infrared and visible range but suffer from high absorption and color formation in the UV spectrum which disqualify then for such wavelength. Recently, the advances of inhibited-coupling hollow-core photonic crystal fibers made them as an unique tool to transport UV radiation thanks to an ultralow overlap with the silica cladding and record losses down to 10 dB/km. By further optimizing such fiber, we report in this letter a record single-mode delivery of 23.3 W (155 μJ) with 92% transmission from a 343 nm, 10 ns, 150 kHz laser source, corresponding to an improvement of the current state-of-the-art by two orders of magnitude. © 2022 Optica Publishing Group

Publisher

Research Square Platform LLC

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