Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-temporal resolution. We use the Fourier transform (FT) variant of laser-induced electron diffraction (LIED), FT-LIED, to directly retrieve the molecular structure of H2O+ with picometer and femtosecond resolution without a priori knowledge of the molecular structure nor the use of retrieval algorithms or ab initio calculations. We identify a symmetrically stretched H2O+ field-dressed structure that is most likely in the ground electronic state. We subsequently study the nuclear response of an isolated water molecule to an external laser field at four different field strengths. We show that upon increasing the laser field strength from 2.5 to 3.8 V...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...
Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-tempo...
Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-tempo...
Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-tempo...
Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-tempo...
Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-tempo...
We use laser-induced electron diffraction (LIED) to self-image the molecular structure of an isolate...
We use laser-induced electron diffraction (LIED) to self-image the molecular structure of an isolate...
We use laser-induced electron diffraction (LIED) to self-image the molecular structure of an isolate...
We use laser-induced electron diffraction (LIED) to self-image the molecular structure of an isolate...
Visualizing molecular transformations in real-time requires a structural retrieval method with {\AA}...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...
The ultrafast structural dynamics of water following inner-shell ionization is a crucial issue in hi...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...
Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-tempo...
Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-tempo...
Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-tempo...
Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-tempo...
Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-tempo...
We use laser-induced electron diffraction (LIED) to self-image the molecular structure of an isolate...
We use laser-induced electron diffraction (LIED) to self-image the molecular structure of an isolate...
We use laser-induced electron diffraction (LIED) to self-image the molecular structure of an isolate...
We use laser-induced electron diffraction (LIED) to self-image the molecular structure of an isolate...
Visualizing molecular transformations in real-time requires a structural retrieval method with {\AA}...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...
The ultrafast structural dynamics of water following inner-shell ionization is a crucial issue in hi...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...