Photoionization of helium by attosecond pulses: extraction of spectra from correlated wave functions
arXiv:1210.2187 · doi:10.1103/PhysRevA.87.053405
Abstract
We investigate the photoionization spectrum of helium by attosecond XUV pulses both in the spectral region of doubly excited resonances as well as above the double ionization threshold. In order to probe for convergence, we compare three techniques to extract photoelectron spectra from the wavepacket resulting from the integration of the time-dependent Schroedinger equation in a finite-element discrete variable representation basis. These techniques are: projection on products of hydrogenic bound and continuum states, projection onto multi-channel scattering states computed in a B-spline close-coupling basis, and a technique based on exterior complex scaling (ECS) implemented in the same basis used for the time propagation. These methods allow to monitor the population of continuum states in wavepackets created with ultrashort pulses in different regimes. Applications include photo cross sections and anisotropy parameters in the spectral region of doubly excited resonances, time-resolved photoexcitation of autoionizing resonances in an attosecond pump-probe setting, and the energy and angular distribution of correlated wavepackets for two-photon double ionization.
19 pages, 12 figures
References in corpus (8)
- Attosecond control of electrons emitted from a nanoscale metal tip
- Nonsequential two-photon double ionization of helium
- Photo-electron momentum spectra from minimal volumes: the time-dependent surface flux method
- Coherent Electron Scattering Captured by an Attosecond Quantum Stroboscope
- t-SURFF: Fully Differential Two-Electron Photo-Emission Spectra
- Cross sections for short pulse single and double ionization of helium
- Radiation Generated by Charge Migration Following Ionization
- A numerical study of two-photon ionization of helium using the Pyprop framework
Cited by in corpus (25)
- Tensor network simulation of non-Markovian dynamics in organic polaritons
- Time-dependent generalized-active-space configuration-interaction approach to photoionization dynamics of atoms and molecules
- Modulation of attosecond beating in resonant two-photon ionization
- Two-photon finite-pulse model for resonant transitions in attosecond experiments
- Calculation of photoelectron spectra within the time-dependent configuration interaction singles scheme
- Double photo-electron momentum spectra of Helium at infrared wavelength
- Two-dimensional spectral interpretation of time-dependent absorption near laser-coupled resonances
- Fourth order real space solver for the time-dependent Schrödinger equation with singular Coulomb potential
- Time-dependent R-matrix theory applied to two-photon double ionization of He
- Canonical symplectic structure and structure-preserving geometric algorithms for Schrödinger-Maxwell systems
- Ionization of helium by slow antiproton impact: total and differential cross sections
- Circular holographic ionization-phase meter
- Electron correlation in beryllium: Effects in ground state, short-pulse photoionization and time-delay studies
- Breakup of H by photon impact
- Modelling the effect of nuclear motion on the attosecond time-resolved photoelectron spectra of ethylene
- Coupled square well model and Fano-phase correspondence
- Absorption and analysis of unbound quantum particles -- one by one
- Ionic Coherence in Resonant Above-Threshold Attosecond Ionization Spectroscopy
- Coherent control of an Helium-Ion ensemble
- 60 years of attosecond physics at ICPEAC: from collisions to ultrashort pulses
- Fano resonance in XUV generated by helium with few-cycle intense laser pulses and its classical analogy
- Linear build-up of Fano resonance spectral profiles
- Extracting partial decay rates of helium from complex rotation: autoionizing resonances of the one-dimensional configurations
- Time-dependent Hole States in Multiconfigurational Time-Dependent Hartree-Fock Approaches: Applications in Photoionization of Water Molecule
- Transient field-resolved reflectometry at 50-100 THz