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This article is cited in 2 scientific papers (total in 2 papers)
Femtosecond technology
Controlled light localisation and nonlinear-optical interactions of short laser pulses in holey fibres
A. B. Fedotova, A. M. Zheltikova, A. P. Tarasevitchb, M. V. Alfimovc, A. A. Ivanovc, L. A. Golovana, P. K. Kashkarova, A. A. Podshivalovd, V. I. Beloglazove, J. W. Hausf, D. Lindeb a Lomonosov Moscow State University, Faculty of Physics
b Institut für Laser- und Plasmaphysik, Universität Essen, Germany
c Photochemistry Centre, Russian Academy of Sciences, Moscow
d International Laser Center of Moscow State University
e Institute of Technology and Processing of Glass Structures, Russian Academy of Sciences, Saratov
f University of Dayton, USA
Abstract:
The influence of the structure of holey-fibre cladding on the effective waveguide mode area and the spectral broadening of femtosecond pulses of titanium-sapphire and forsterite lasers is experimentally studied. These experiments demonstrate that the increase in the air-filling fraction of the holey-fibre cladding may substantially enhance the spectral broadening of laser pulses due to the increase in the degree of light localisation in the fibre core.
Received: 26.02.2001
Citation:
A. B. Fedotov, A. M. Zheltikov, A. P. Tarasevitch, M. V. Alfimov, A. A. Ivanov, L. A. Golovan, P. K. Kashkarov, A. A. Podshivalov, V. I. Beloglazov, J. W. Haus, D. Linde, “Controlled light localisation and nonlinear-optical interactions of short laser pulses in holey fibres”, Kvantovaya Elektronika, 31:5 (2001), 387–390 [Quantum Electron., 31:5 (2001), 387–390]
Linking options:
https://www.mathnet.ru/eng/qe1960 https://www.mathnet.ru/eng/qe/v31/i5/p387
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