Photonic band-gap fiber gas cell fabricated using femtosecond micromachining

Femtosecond laser drilling is used to produce a variablepressure fiber gas cell. Tightly focused laser pulses are used to produce micrometer-diameter radial channels in a hollow-core photonic band-gap fiber (HC-PBGF), and through these microchannels the core of the fiber is filled with a gas. The fi...

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Veröffentlicht in:Optics express 2007-05, Vol.15 (11), p.6690-6695
Hauptverfasser: Hensley, Christopher, Broaddus, Daniel H, Schaffer, Chris B, Gaeta, Alexander L
Format: Artikel
Sprache:eng
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Zusammenfassung:Femtosecond laser drilling is used to produce a variablepressure fiber gas cell. Tightly focused laser pulses are used to produce micrometer-diameter radial channels in a hollow-core photonic band-gap fiber (HC-PBGF), and through these microchannels the core of the fiber is filled with a gas. The fiber cell is formed by fusion splicing and sealing the ends of the HC-PBGF to standard step-index fiber. As a demonstration, acetylene is introduced into an evacuated fiber at multiple backing pressures and spectra are measured.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.15.006690