Hollow Core Optical Fibre Based Gas Discharge Laser Systems: Springer Theses
Autor Adrian Loveen Limba Engleză Hardback – 29 iun 2018
Gas lasers were amongst the earliest laser types to be demonstrated and commercialised, but it was recognised that noble gas lasers were limited by the minimum bore diameter of the laser tube, which is set by diffraction. The advent, in 2011, of hollow optical fibres with optical and physical properties suitable for gas discharge lasers opened up the opportunity to break this diffraction limit. Using a mixture of helium and xenon gas, lasing in the mid-infrared range was achieved using a 100µm core flexible hollow optical fibre which, at 1m long, is several hundred times the diffraction-limited Rayleigh length.
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Paperback (1) | 619.58 lei 6-8 săpt. | |
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Specificații
ISBN-13: 9783319939698
ISBN-10: 3319939696
Pagini: 128
Ilustrații: XXI, 107 p. 78 illus., 19 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.36 kg
Ediția:1st ed. 2018
Editura: Springer International Publishing
Colecția Springer
Seria Springer Theses
Locul publicării:Cham, Switzerland
ISBN-10: 3319939696
Pagini: 128
Ilustrații: XXI, 107 p. 78 illus., 19 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.36 kg
Ediția:1st ed. 2018
Editura: Springer International Publishing
Colecția Springer
Seria Springer Theses
Locul publicării:Cham, Switzerland
Cuprins
Introduction to Laser Physics.- Introduction to Discharge Physics.- Electrically Pumped Noble Gas Lasers.- Introduction to Optical Fibres.- Experiment Assembly and CW Measurements of the He-Xe Laser.- Pulsed Measurements of the He-Xe Laser.- Experiments with New Gas Mixtures.- Conclusions and Future Prospects.
Notă biografică
Adrian Love graduated from the University of Warwick in 2013 with a first class degree in Mathematics and Physics. He then joined the Centre for Photonics and Photonic Materials at the University of Bath to complete his PhD following a successful summer placement in 2012. His work on fibre based gas lasers under the supervision of William Wadsworth followed a short project on nonlinear optics. Having completed his PhD at the end of 2017, he left academia to pursue other career interests.
Textul de pe ultima copertă
The research in this book represents the culmination of a drive to build the first discharge gas laser unencumbered by the effects of diffraction. This breakthrough has been achieved through careful implementation of a discharge within a hollow-core optical fibre, and by developing measurement and analysis techniques to demonstrate laser action in an experimental optical cavity.
Gas lasers were amongst the earliest laser types to be demonstrated and commercialised, but it was recognised that noble gas lasers were limited by the minimum bore diameter of the laser tube, which is set by diffraction. The advent, in 2011, of hollow optical fibres with optical and physical properties suitable for gas discharge lasers opened up the opportunity to break this diffraction limit. Using a mixture of helium and xenon gas, lasing in the mid-infrared range was achieved using a 100µm core flexible hollow optical fibre which, at 1m long, is several hundred times the diffraction-limitedRayleigh length.
Gas lasers were amongst the earliest laser types to be demonstrated and commercialised, but it was recognised that noble gas lasers were limited by the minimum bore diameter of the laser tube, which is set by diffraction. The advent, in 2011, of hollow optical fibres with optical and physical properties suitable for gas discharge lasers opened up the opportunity to break this diffraction limit. Using a mixture of helium and xenon gas, lasing in the mid-infrared range was achieved using a 100µm core flexible hollow optical fibre which, at 1m long, is several hundred times the diffraction-limitedRayleigh length.
Caracteristici
Nominated as an outstanding Ph.D. thesis by the University of Bath, United Kingdom Showcases the first-ever hollow core fibre-based gas discharge laser Demonstrates the longest stable electrical discharge within a narrow bore tube/fibre to date