© 2019 Author(s). We study, experimentally and theoretically, the ionization probability of singly halogenated methane molecules, CH3Cl and CH3Br, in intense linearly polarized 800 nm laser pulses as a function of the angle between the molecular axis and the laser polarization. Experimentally, the molecules are exposed to two laser pulses with a relative time delay. The first, weaker pulse induces a nuclear rotational wave packet within the molecules, which are then ionized by the second, stronger pulse. The angle-dependent ionization yields are extracted from fits of the measured delay-dependent ionization signal to a superposition of moments of the rotational wave packet\u27s angular distribution. Angle-dependent strong-field ionization (...
When a sufficiently strong laser field acts on an atom or a molecule, ionization can occur. Electron...
Field ionization of hydrocarbon molecules to high charge states is studied as a function of laser pu...
Using circular and linear laser polarization for strong-field dissociative ionization we show that i...
We study, experimentally and theoretically, the ionization probability of singly halogenated methane...
We have studied, experimentally and theoretically, the ionization probability of carbonyl sulfide (O...
Citation: Zigo, S., Le, A. T., Timilsina, P., & Trallero-Herrero, C. A. (2017). Ionization Study of ...
The angle-dependence of strong field ionization has been studied for a set of molecules containing t...
Through the use of the technique of time-of-flight mass spectroscopy, we obtain strong-field ionizat...
Strong-field ionization and the resulting electronic dynamics are important for a range of processes...
We have measured the Recoil Frame - Photoelectron Angular Distributions (RF-PADs) for inner-shell ph...
Using 50-fs, 800-nm pulses, we study the intense-field ionization and fragmentation of the monohalob...
Much of our intuition about strong-field processes is built upon studies of diatomic molecules, whic...
The combination of photoelectron spectroscopy and ultrafast light sources is on track to set new sta...
We propose a new approach to obtain molecular frame photoelectron angular distributions from molecul...
When a sufficiently strong laser field acts on an atom or a molecule, ionization can occur. Electron...
Field ionization of hydrocarbon molecules to high charge states is studied as a function of laser pu...
Using circular and linear laser polarization for strong-field dissociative ionization we show that i...
We study, experimentally and theoretically, the ionization probability of singly halogenated methane...
We have studied, experimentally and theoretically, the ionization probability of carbonyl sulfide (O...
Citation: Zigo, S., Le, A. T., Timilsina, P., & Trallero-Herrero, C. A. (2017). Ionization Study of ...
The angle-dependence of strong field ionization has been studied for a set of molecules containing t...
Through the use of the technique of time-of-flight mass spectroscopy, we obtain strong-field ionizat...
Strong-field ionization and the resulting electronic dynamics are important for a range of processes...
We have measured the Recoil Frame - Photoelectron Angular Distributions (RF-PADs) for inner-shell ph...
Using 50-fs, 800-nm pulses, we study the intense-field ionization and fragmentation of the monohalob...
Much of our intuition about strong-field processes is built upon studies of diatomic molecules, whic...
The combination of photoelectron spectroscopy and ultrafast light sources is on track to set new sta...
We propose a new approach to obtain molecular frame photoelectron angular distributions from molecul...
When a sufficiently strong laser field acts on an atom or a molecule, ionization can occur. Electron...
Field ionization of hydrocarbon molecules to high charge states is studied as a function of laser pu...
Using circular and linear laser polarization for strong-field dissociative ionization we show that i...