Self-compression by femtosecond pulse filamentation: experiments versus numerical simulations.
about
Multifilamentation of powerful optical pulses in silicaTransition from linear- to nonlinear-focusing regime in filamentation.A strong-field driver in the single-cycle regime based on self-compression in a kagome fibreMulti-millijoule few-cycle mid-infrared pulses through nonlinear self-compression in bulk.Amplitude concentration in a phase-modulated spectrum due to femtosecond filamentation.Power-scalable subcycle pulses from laser filamentsSaturation of the all-optical Kerr effect.
P2860
Q27350235-FD30E888-9D5D-4016-B259-B0C05AC1B64FQ34590134-55ED4049-3B12-41E9-9AFE-6276B0B8A8C0Q35050449-2825D84B-7F6C-4B3D-AEF4-9EFE10F40390Q36130664-F1425B89-040E-480E-8BE9-8EE50FF226E5Q36299118-7AAA537E-38DA-42A2-8BF5-9EE2D87F8B72Q36331467-C38A146F-E49B-4E30-B70B-F03B003DD107Q51562298-297FE2E5-9AE3-4A67-BC01-C62E1A8E5A8C
P2860
Self-compression by femtosecond pulse filamentation: experiments versus numerical simulations.
description
2006 nî lūn-bûn
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2006年の論文
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2006年学术文章
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2006年学术文章
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2006年学术文章
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name
Self-compression by femtosecon ...... versus numerical simulations.
@en
Self-compression by femtosecon ...... versus numerical simulations.
@nl
type
label
Self-compression by femtosecon ...... versus numerical simulations.
@en
Self-compression by femtosecon ...... versus numerical simulations.
@nl
prefLabel
Self-compression by femtosecon ...... versus numerical simulations.
@en
Self-compression by femtosecon ...... versus numerical simulations.
@nl
P2093
P2860
P1433
P1476
Self-compression by femtosecon ...... s versus numerical simulations
@en
P2093
Falk Lederer
Gero Stibenz
Günter Steinmeyer
Matthias Schnürer
Nickolai Zhavoronkov
Thomas Sokollik
P2860
P304
P356
10.1103/PHYSREVE.74.056604
P407
P433
P577
2006-11-06T00:00:00Z