User account menu

  • Log in
Home
Theoretical Spectroscopy Group

Main navigation

  • Home
  • People
    • Andrea Cucca
    • Christine Giorgetti
    • Francesco Sottile
    • Lucia Reining
    • Matteo Gatti
    • Valerie Veniard
    • Vitaly Gorelov
      • Fatema Mohamed
      • Kevin Leveque-Simon
      • Felana Andriambelaza
      • Maram Ali Ahmed Musa
      • Sarbajit Dutta
      • Marc Aichner
      • Carlos Rodriguez Perez
      • Jean Goossaert
      • Niklas Penner
    • Former Members
  • How to Reach Us
  • Research
    • Strong Correlation
    • Plasmons and EELS
    • Developments in TDDFT
    • Excitons and Exciton Dispersion
    • Larger Public
    • Low dimensional materials
    • Non-linear Optics
    • Scientific goals and main achievements
    • Theory Developments
    • Software
    • Publications
    • Thesis
  • Training
  • ETSF Events

Multicolour above-threshold ionization of helium: quantum interference effects in angular distributions

Breadcrumb

  • Home
  • Multicolour above-threshold ionization of helium: quantum interference effects in angular distributions
Author
O Guyetand
M Gisselbrecht
A Huetz
P Agostini
Richard Taïeb
Valérie Véniard
Alfred Maquet
L Antonucci
O Boyko
C Valentin
D Douillet
Keywords
non-Palaiseau
paper
Abstract

Energy- and angle-resolved photoionization spectra of He irradiated by linearly polarized intense 810 run laser radiation and several of its XUV odd harmonics are investigated. The angular distribution of the odd-order peaks, produced by single-photon ionization by one harmonic, is, surprisingly, broadened by the IR field. The even-order ones, due to two-colour, two-photon ionization, show at 90 degrees lobes which depend on the relative IR-XUV phase. Application to the characterization of attosecond pulses is suggested.

Year of Publication
2005
Journal
JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS
Volume
38
Number of Pages
L357-L363
Date Published
NOV 28
ISSN Number
0953-4075
DOI
10.1088/0953-4075/38/22/L01
Download citation
  • DOI
  • Google Scholar
  • BibTeX
  • RIS

Developed & Designed by Alaa Haddad. Customized by ETSF Palaiseau © 2025.