Double Pass Gain in Helium-Xenon Discharges in Hollow Optical Fibres at 3.5 μm

Adrian Love, Samuel Bateman, Walter Belardi, Colin E. Webb, William Wadsworth

Research output: Contribution to conferencePaper

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Abstract

Gain is observed in a double pass of a Helium-Xenon gas DC discharge in a 90cm long flexible hollow core fibre. Output at 3.5μm increases with discharge current up to the maximum of 0:55mA
Original languageEnglish
Number of pages2
Publication statusPublished - May 2015
EventCLEO:2015 - San Jose, USA United States
Duration: 10 May 201515 May 2015

Conference

ConferenceCLEO:2015
CountryUSA United States
CitySan Jose
Period10/05/1515/05/15

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xenon
hollow
optical fibers
helium
direct current
fibers
output
gases

Cite this

Love, A., Bateman, S., Belardi, W., Webb, C. E., & Wadsworth, W. (2015). Double Pass Gain in Helium-Xenon Discharges in Hollow Optical Fibres at 3.5 μm. Paper presented at CLEO:2015, San Jose, USA United States.

Double Pass Gain in Helium-Xenon Discharges in Hollow Optical Fibres at 3.5 μm. / Love, Adrian; Bateman, Samuel; Belardi, Walter; Webb, Colin E.; Wadsworth, William.

2015. Paper presented at CLEO:2015, San Jose, USA United States.

Research output: Contribution to conferencePaper

Love, A, Bateman, S, Belardi, W, Webb, CE & Wadsworth, W 2015, 'Double Pass Gain in Helium-Xenon Discharges in Hollow Optical Fibres at 3.5 μm' Paper presented at CLEO:2015, San Jose, USA United States, 10/05/15 - 15/05/15, .
Love A, Bateman S, Belardi W, Webb CE, Wadsworth W. Double Pass Gain in Helium-Xenon Discharges in Hollow Optical Fibres at 3.5 μm. 2015. Paper presented at CLEO:2015, San Jose, USA United States.
Love, Adrian ; Bateman, Samuel ; Belardi, Walter ; Webb, Colin E. ; Wadsworth, William. / Double Pass Gain in Helium-Xenon Discharges in Hollow Optical Fibres at 3.5 μm. Paper presented at CLEO:2015, San Jose, USA United States.2 p.
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abstract = "Gain is observed in a double pass of a Helium-Xenon gas DC discharge in a 90cm long flexible hollow core fibre. Output at 3.5μm increases with discharge current up to the maximum of 0:55mA",
author = "Adrian Love and Samuel Bateman and Walter Belardi and Webb, {Colin E.} and William Wadsworth",
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AU - Belardi, Walter

AU - Webb, Colin E.

AU - Wadsworth, William

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