Photoabsorption of attosecond XUV light pulses by two strongly laser-coupled autoionizing states
arXiv:1205.4766 · doi:10.1103/PhysRevA.85.013409
Abstract
We study theoretically the photoabsorption spectra of an attosecond XUV pulse by a laserdressed atomic system. A weak XUV excites an autoionizing state which is strongly coupled to another autoionizing state by a laser. The theory was applied to explain two recent experiments [Loh, Greene, and Leone, Chem. Phys. 350, 7 (2008); Wang, Chini, Chen, Zhang, Cheng, He, Cheng, Wu, Thumm, and Chang, Phys. Rev. Lett. 105 143002 (2010)] where the absorption spectra of the XUV lights were measured against the time delay between the laser and the XUV. In another example, we study an attosecond pulse exciting the 2s2p(1P) resonance of helium which is resonantly coupled to the 2s2(1S) resonance by a moderately intense 540 nm laser. The relation between the photoabsorption spectra and the photoelectron spectra and the modification of the transmitted lights in such an experiment are analyzed. The role of Rabi flopping between the two autoionizing states within their lifetimes is investigated with respect to the laser intensity and detuning.
9 pages, 6 figures
References in corpus (5)
- Coherent Electron Scattering Captured by an Attosecond Quantum Stroboscope
- Medium propagation effects in high harmonic generation of Ar and N
- Femtosecond induced transparency and absorption in the extreme ultraviolet by coherent coupling of the He 2s2p (1P0) and 2p2 (1Se) double excitation states with 800 nm light
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Cited by in corpus (10)
- Theory of Attosecond Transient Absorption Spectroscopy of Krypton for Overlapping Pump and Probe Pulses
- Modulation of attosecond beating in resonant two-photon ionization
- Beyond the single-atom response in absorption lineshapes: Probing a dense, laser-dressed helium gas with attosecond pulse trains
- Some Exact Properties of the Nonequilibrium Response Function for Transient Photoabsorption
- Absorption and emission of single attosecond light pulses in an autoionizing gaseous medium dressed by a time-delayed control field
- Two-dimensional spectral interpretation of time-dependent absorption near laser-coupled resonances
- Autoionizing Polaritons in Attosecond Atomic Ionization
- Time-resolved resonant photoionization of He using a time-dependent Feshbach method with ultrashort laser pulses
- Resonant enhancement of a single attosecond pulse in a gas medium by a time-delayed control field
- Probing dipole-forbidden autoionizing states by isolated attosecond pulses