Multi-mass velocity-map imaging (VMI) is becoming established as a promising method for probing the dynamics of a variety of gas-phase chemical processes. We provide an overview of velocity-map imaging and multi-mass velocity-map imaging techniques, highlighting examples in which these approaches have been used to provide mechanistic insights into a range of photoinduced and electron-induced chemical processes. Multi-mass detection capabilities have also led to the development of two new tools for the chemical dynamics toolbox, in the form of Coulomb-explosion imaging and covariance-map imaging. These allow details of molecular structure to be followed in real time over the course of a chemical reaction, offering the tantalising prospect of...
In this thesis, the three-dimensional (3D) and multi-mass imaging capabilities of the Pixel Imaging ...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.45]{Set-up_DJB.eps} \end{wrapfigure} A powe...
Taatjes CA, Hansen N, Osborn DL, Kohse-Höinghaus K, Cool TA, Westmoreland PR. "Imaging" combustion c...
Multi-mass velocity-map imaging (VMI) is becoming established as a promising method for probing the ...
Every chemical reaction bears its own unique fingerprint, embodied in the kinetic energy, angular di...
The work described in this thesis illustrates the application of multi-mass velocity-map imaging in ...
Photofragment velocity-map imaging (VMI) has generally been employed to investigate the photodissoci...
Velocity map imaging (VMI) in combination with state-selective resonance enhanced multiphoton ioniza...
Velocity map imaging (VMI) combined with supersonically expanded molecules pro- vides molecular-leve...
Ion imaging methods are making ever greater impact on studies of gas phase molecular reaction dynami...
This account introduces a new variant of time-of-flight mass spectrometry, termed velocity-map imagi...
Ultrafast laser pump-probe methods allow chemical reactions to be followed in real time, and have pr...
Ion imaging is a multiplex detection technique that employs multi-photon ionization and two-dimensio...
International audienceThe introduction of femto-chemistry has made it a primary goal to follow the n...
The introduction of time-resolved measurements in the femtosecond time-scale using velocity map imag...
In this thesis, the three-dimensional (3D) and multi-mass imaging capabilities of the Pixel Imaging ...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.45]{Set-up_DJB.eps} \end{wrapfigure} A powe...
Taatjes CA, Hansen N, Osborn DL, Kohse-Höinghaus K, Cool TA, Westmoreland PR. "Imaging" combustion c...
Multi-mass velocity-map imaging (VMI) is becoming established as a promising method for probing the ...
Every chemical reaction bears its own unique fingerprint, embodied in the kinetic energy, angular di...
The work described in this thesis illustrates the application of multi-mass velocity-map imaging in ...
Photofragment velocity-map imaging (VMI) has generally been employed to investigate the photodissoci...
Velocity map imaging (VMI) in combination with state-selective resonance enhanced multiphoton ioniza...
Velocity map imaging (VMI) combined with supersonically expanded molecules pro- vides molecular-leve...
Ion imaging methods are making ever greater impact on studies of gas phase molecular reaction dynami...
This account introduces a new variant of time-of-flight mass spectrometry, termed velocity-map imagi...
Ultrafast laser pump-probe methods allow chemical reactions to be followed in real time, and have pr...
Ion imaging is a multiplex detection technique that employs multi-photon ionization and two-dimensio...
International audienceThe introduction of femto-chemistry has made it a primary goal to follow the n...
The introduction of time-resolved measurements in the femtosecond time-scale using velocity map imag...
In this thesis, the three-dimensional (3D) and multi-mass imaging capabilities of the Pixel Imaging ...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.45]{Set-up_DJB.eps} \end{wrapfigure} A powe...
Taatjes CA, Hansen N, Osborn DL, Kohse-Höinghaus K, Cool TA, Westmoreland PR. "Imaging" combustion c...