Ultraviolet resonator integrated in a hollow-core fiber for Xenon plasma lasing
POSTER
Abstract
We integrate a cavity in a large-diameter hollow-core optical fiber based on inhibited coupling as a step towards realization of a fiber-integrated gas laser in the ultraviolet (UV) region. This is accomplished by attaching highly reflective photonic crystal (PC) membranes onto the ends of a fiber segment to form a Fabry-Perot cavity. The PC membranes are fabricated using e-beam lithography and reactive ion etching, which are then mounted on the fiber face using a micromanipulator stage. The presence of the PC holes allow for injection loading of atomic species into the fiber-cavity. Specifically, Xenon gas can be introduced through the perforated membrane into the hollow-core of the fiber to act as a gain medium for UV lasing when exposed to RF discharge.
Presenters
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Jeremy Flannery
University of Waterloo
Authors
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Jeremy Flannery
University of Waterloo
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Sema Kuru
University of Waterloo
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Supratik Sarkar
University of Waterloo, Institute for Quantum Computing, University of Waterloo
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Vinodh Raj Rajagopal Muthu
University of Waterloo
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Michal Bajcsy
University of Waterloo, Institute for Quantum Computing, University of Waterloo