Few-cycle self-compression via multimode nonlinear optics in gas filled waveguides
Few-cycle self-compression via multimode nonlinear optics in gas filled waveguides
Multimode simulations predict dramatic ionization-induced self-compression of high energy ultrashort pulses within short gas filled capillaries. The mechanism observed allows for the temporal compression of 53 fs pulses into the few-cycle regime.
Anderson, P.N.
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Butcher, T.J.
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Horak, P.
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Frey, J.G.
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Brocklesby, W.S.
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Anderson, P.N.
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Butcher, T.J.
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Horak, P.
520489b5-ccc7-4d29-bb30-c1e36436ea03
Frey, J.G.
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Brocklesby, W.S.
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Anderson, P.N., Butcher, T.J., Horak, P., Frey, J.G. and Brocklesby, W.S.
(2012)
Few-cycle self-compression via multimode nonlinear optics in gas filled waveguides.
CLEO/QELS 2012, , San Jose, United States.
06 - 11 May 2012.
Record type:
Conference or Workshop Item
(Paper)
Abstract
Multimode simulations predict dramatic ionization-induced self-compression of high energy ultrashort pulses within short gas filled capillaries. The mechanism observed allows for the temporal compression of 53 fs pulses into the few-cycle regime.
More information
e-pub ahead of print date: May 2012
Venue - Dates:
CLEO/QELS 2012, , San Jose, United States, 2012-05-06 - 2012-05-11
Organisations:
Optoelectronics Research Centre
Identifiers
Local EPrints ID: 368321
URI: http://eprints.soton.ac.uk/id/eprint/368321
PURE UUID: 8200cd45-dfe4-411a-9edb-ee1bc8d39932
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Date deposited: 06 Sep 2014 15:27
Last modified: 15 Mar 2024 03:13
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Contributors
Author:
P.N. Anderson
Author:
T.J. Butcher
Author:
P. Horak
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