Two-photon finite-pulse model for resonant transitions in attosecond experiments
arXiv:1509.05814 · doi:10.1103/PhysRevA.93.023429
Abstract
We present an analytical model capable of describing two-photon ionization of atoms with attosecond pulses in the presence of intermediate and final isolated autoionizing states. The model is based on the finite-pulse formulation of second-order time-dependent perturbation theory. It approximates the intermediate and final states with Fano's theory for resonant continua, and it depends on a small set of atomic parameters that can either be obtained from separate \emph{ab initio} calculations, or be extracted from few selected experiments. We use the model to compute the two-photon resonant photoelectron spectrum of helium below the N=2 threshold for the RABITT (Reconstruction of Attosecond Beating by Interference of Two-photon Transitions) pump-probe scheme, in which an XUV attosecond pulse train is used in association to a weak IR probe, obtaining results in quantitative agreement with those from accurate \emph{ab initio} simulations. In particular, we show that: i) Use of finite pulses results in a homogeneous red shift of the RABITT beating frequency, as well as a resonant modulation of the beating frequency in proximity of intermediate autoionizing states; ii) The phase of resonant two-photon amplitudes generally experiences a continuous excursion as a function of the intermediate detuning, with either zero or overall variation.
23 pages, 13 figures
References in corpus (5)
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- Attosecond Control of Ionization Dynamics
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- Spectro-temporal shaping of seeded free-electron laser pulses
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- Electron Correlation Effects in Attosecond Photoionization of CO
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- Continuous variable quantum state tomography of photoelectrons
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- Circular holographic ionization-phase meter
- Strongly resonant RABBITT on lithium
- Revealing the target electronic structure with under-threshold RABBIITT
- Attosecond photoionization dynamics with stimulated core-valence transitions
- Application of the Complex Kohn Variational Method to Attosecond Spectroscopy
- Angle-resolved time delays for shake-up ionization of helium
- Towards the complete phase profiling of attosecond wave packets
- Ionisation dynamics through a Fano resonance: Time domain interpretation of spectral amplitudes
- Relation Between Photoionisation Cross Sections and Attosecond Time Delays
- Two-photon double ionization with finite pulses: Application of the virtual sequential model to helium
- Resonant photoionization and time delay
- Role of intermediate continuum states in exterior complex scaling calculations of two-photon ionization cross section
- Reconstruction of attosecond beating by interference of two-photon interband transitions in solids
- Calculation of multiphoton ionization amplitudes and cross sections of few-electron atoms
- Resonant Anisotropic Emission in Two-Photon Interferometric Spectroscopy
- Phase evolution of strong-field ionization