The introduction of femto-chemistry has made it a primary goal to follow the nuclear and electronic evolution of a molecule in time and space as it undergoes a chemical reaction. Using Coulomb Explosion Imaging, we have shot the first high-resolution molecular movie of a to and fro isomerization process in the acetylene cation. So far, this kind of phenomenon could only be observed using vacuum ultraviolet light from a free-electron laser. Here we show that 266 \u2030nm ultrashort laser pulses are capable of initiating rich dynamics through multiphoton ionization. With our generally applicable tabletop approach that can be used for other small organic molecules, we have investigated two basic chemical reactions simultaneously: proton migrat...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
International audienceThe introduction of femto-chemistry has made it a primary goal to follow the n...
The introduction of femto-chemistry has made it a primary goal to follow the nuclear and electronic ...
International audience; The introduction of femto-chemistry has made it a primary goal to follow the...
We have demonstrated a generally applicable tabletop approach utilizing a 266nm femtosecond laser pu...
The first high-resolution molecular movie of proton migration in the acetylene cation is obtained us...
The first high-resolution molecular movie of proton migration in the acetylene cation is obtained us...
It is a long-standing dream of scientists to capture the ultra-fast dynamics of molecular or chemica...
It is a long-standing dream of scientists to capture the ultra-fast dynamics of molecular or chemica...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
International audienceThe introduction of femto-chemistry has made it a primary goal to follow the n...
The introduction of femto-chemistry has made it a primary goal to follow the nuclear and electronic ...
International audience; The introduction of femto-chemistry has made it a primary goal to follow the...
We have demonstrated a generally applicable tabletop approach utilizing a 266nm femtosecond laser pu...
The first high-resolution molecular movie of proton migration in the acetylene cation is obtained us...
The first high-resolution molecular movie of proton migration in the acetylene cation is obtained us...
It is a long-standing dream of scientists to capture the ultra-fast dynamics of molecular or chemica...
It is a long-standing dream of scientists to capture the ultra-fast dynamics of molecular or chemica...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...
Visualizing chemical reactions as they occur requires atomic spatial and femtosecond temporal resolu...