Two-photon double ionization of neon using an intense attosecond pulse train
arXiv:1603.05439 · doi:10.1103/PhysRevA.93.061402
Abstract
We present the first demonstration of two-photon double ionization of neon using an intense extreme ultraviolet (XUV) attosecond pulse train (APT) in a photon energy regime where both direct and sequential mechanisms are allowed. For an APT generated through high-order harmonic generation (HHG) in argon we achieve a total pulse energy close to 1 J, a central energy of 35 eV and a total bandwidth of eV. The APT is focused by broadband optics in a neon gas target to an intensity of Wcm. By tuning the photon energy across the threshold for the sequential process the double ionization signal can be turned on and off, indicating that the two-photon double ionization predominantly occurs through a sequential process. The demonstrated performance opens up possibilities for future XUV-XUV pump-probe experiments with attosecond temporal resolution in a photon energy range where it is possible to unravel the dynamics behind direct vs. sequential double ionization and the associated electron correlation effects.
Cited by in corpus (19)
- Spatio-temporal coupling of attosecond pulses
- Extreme-ultraviolet refractive optics
- Compact intense extreme-ultraviolet source
- High-flux 100-kHz attosecond pulse source driven by a high average power annular laser beam
- Micro-focusing of broadband high-order harmonic radiation by a double toroidal mirror
- Dissociation dynamics of the diamondoid adamantane upon photoionization by XUV femtosecond pulses
- Bright, polarization-tunable high repetition rate extreme ultraviolet beamline for coincidence electron-ion imaging
- A Versatile Velocity Map Ion-Electron Covariance Imaging Spectrometer for High-Intensity XUV Experiments
- Determination of the spectral variation origin in high-order harmonic generation in noble gases
- Propagation-assisted generation of intense few-femtosecond high-harmonic pulses
- Bright continuously-tunable VUV source for ultrafast spectroscopy
- Chromatic aberrations correction of attosecond high-order harmonic beams by flat-top spatial shaping of the fundamental beam
- Time Resolved Investigation of High Repetition Rate Gas Jet Target For High Harmonic Generation
- Plasma lens for focusing attosecond pulses
- Mirrorless focusing of XUV high-order harmonics
- Generation of micro-Joule level coherent quasi-continuum extreme ultraviolet radiation using multi-cycle intense laser-atom interactions
- Attosecond dispersion as a diagnostics tool for solid-density laser-generated plasmas
- Extreme Ultraviolet-Excited Time-Resolved Luminescence Spectroscopy Using an Ultrafast Table-Top High-Harmonic Generation Source
- Complete characterization of multi-channel single photon ionization