The formaldehyde molecule is an important model system for understanding dynamical processes in small polyatomic molecules. However, prior to this work, there have been no reports of a resonance-enhanced multiphoton ionization (REMPI) detection scheme for formaldehyde suitable for rovibrationally state-selective detection in molecular beam scattering experiments. Previously reported tunable REMPI schemes are either non-rotationally resolved, involve multiple resonant steps, or involve many-photon ionization steps. In the current work, we present a new 1 + 1' REMPI scheme for formaldehyde. The first photon is tunable and provides rotational resolution via the vibronically allowed à 1A2 ← X[combining tilde] 1A1 transition. Molecules are then ...
A state-selected beam of hydroxyl radicals is generated using a pulsed discharge source and hexapole...
Resonance-enhanced multiphoton ionization (REMPI) is a widely used technique for studying molecular ...
In this paper we investigate the 2 + 1′ resonance enhanced multi-photon ionisation (REMPI) of molecu...
The formaldehyde molecule is an important model system for understanding dynamical processes in smal...
The formaldehyde molecule is an important model system for understanding dynamical processes in smal...
Recent high resolution photoelectron spectroscopic studies of the (1+1) resonant enhanced multiphoto...
Resonance enhanced multiphoton ionization (REMPI) utilizes tunable dye lasers to ionize an atom or m...
Theoretical investigations of total and partial‐channel photoabsorption cross sections in molecular ...
The first observation of (2+1)‐REMPI of H2O and D2O is reported. With the use of a high power tunabl...
The conversion of translational to rotational motion often plays a major role in the trapping of sma...
In this paper, we report the results of ab initio calculations of photoelectron angular distribution...
Published high-resolution rotation-vibration transitions of H212C16O, the principal isotopologue of ...
A discussion is given to studies of Resonance Enhanced Multiphoton Ionization (REMPI) processes in m...
This dissertation presents the results of studies of several rotationally-resolved resonance enhance...
In this paper we formulate a theory for the analysis of resonant enhanced multiphoton ionization pro...
A state-selected beam of hydroxyl radicals is generated using a pulsed discharge source and hexapole...
Resonance-enhanced multiphoton ionization (REMPI) is a widely used technique for studying molecular ...
In this paper we investigate the 2 + 1′ resonance enhanced multi-photon ionisation (REMPI) of molecu...
The formaldehyde molecule is an important model system for understanding dynamical processes in smal...
The formaldehyde molecule is an important model system for understanding dynamical processes in smal...
Recent high resolution photoelectron spectroscopic studies of the (1+1) resonant enhanced multiphoto...
Resonance enhanced multiphoton ionization (REMPI) utilizes tunable dye lasers to ionize an atom or m...
Theoretical investigations of total and partial‐channel photoabsorption cross sections in molecular ...
The first observation of (2+1)‐REMPI of H2O and D2O is reported. With the use of a high power tunabl...
The conversion of translational to rotational motion often plays a major role in the trapping of sma...
In this paper, we report the results of ab initio calculations of photoelectron angular distribution...
Published high-resolution rotation-vibration transitions of H212C16O, the principal isotopologue of ...
A discussion is given to studies of Resonance Enhanced Multiphoton Ionization (REMPI) processes in m...
This dissertation presents the results of studies of several rotationally-resolved resonance enhance...
In this paper we formulate a theory for the analysis of resonant enhanced multiphoton ionization pro...
A state-selected beam of hydroxyl radicals is generated using a pulsed discharge source and hexapole...
Resonance-enhanced multiphoton ionization (REMPI) is a widely used technique for studying molecular ...
In this paper we investigate the 2 + 1′ resonance enhanced multi-photon ionisation (REMPI) of molecu...