Enhanced high harmonic generation from multiply ionized argon above 500 eV through laser pulse self-compression

By combining laser pulse self-compression and high harmonic generation within a single waveguide, we demonstrate high harmonic emission from multiply charged ions for the first time. This approach enhances the laser intensity and counteracts ionization-induced defocusing, extending the cutoff photon...

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Veröffentlicht in:Physical review letters 2009-10, Vol.103 (14), p.143901-143901, Article 143901
Hauptverfasser: Arpin, P, Popmintchev, T, Wagner, N L, Lytle, A L, Cohen, O, Kapteyn, H C, Murnane, M M
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container_end_page 143901
container_issue 14
container_start_page 143901
container_title Physical review letters
container_volume 103
creator Arpin, P
Popmintchev, T
Wagner, N L
Lytle, A L
Cohen, O
Kapteyn, H C
Murnane, M M
description By combining laser pulse self-compression and high harmonic generation within a single waveguide, we demonstrate high harmonic emission from multiply charged ions for the first time. This approach enhances the laser intensity and counteracts ionization-induced defocusing, extending the cutoff photon energy in argon above 500 eV for the first time, with higher spectral intensity and cutoff energy than He for the same input laser parameters. This Letter demonstrates a pathway for extending high harmonic emission to very high photon energies using large, multiply charged, ions with high ionization potentials.
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ispartof Physical review letters, 2009-10, Vol.103 (14), p.143901-143901, Article 143901
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1079-7114
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source American Physical Society Journals
subjects 70 PLASMA PHYSICS AND FUSION TECHNOLOGY
ARGON
ATOMIC AND MOLECULAR PHYSICS
BOSONS
CHARGED PARTICLES
CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS
ELEMENTARY PARTICLES
ELEMENTS
EMISSION
ENERGY RANGE
EV RANGE
EV RANGE 100-1000
FLUIDS
FREQUENCY MIXING
GASES
HARMONIC GENERATION
ION EMISSION
IONIZATION
IONIZATION POTENTIAL
IONS
LASERS
MASSLESS PARTICLES
NONMETALS
PHOTONS
PULSES
RARE GASES
WAVEGUIDES
title Enhanced high harmonic generation from multiply ionized argon above 500 eV through laser pulse self-compression
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