We use laser-induced electron diffraction (LIED) to self-image the molecular structure of an isolated water molecular ion using its own retuning attosecond electron wave packet (EWP). Using LIED’s sub-femtosecond and picometre spatio-temporal resolution imaging capabilities, we observe the symmetric stretching of the O-H and H-H internuclear distances with increasing laser field strength.Postprint (published version
Citation: Yu, C., Wei, H., Wang, X., Le, A. T., Lu, R. F., & Lin, C. D. (2015). Reconstruction of tw...
Citation: Pullen, M. G., Wolter, B., Le, A. T., Baudisch, M., Hemmer, M., Senftleben, A., . . . Bieg...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...
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...
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...
Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-tempo...
Imaging the microscopic world in real space and real time is a grand challenge of science. In the la...
Citation: Pullen, M. G., Wolter, B., Le, A. T., Baudisch, M., Hemmer, M., Senftleben, A., . . . Bieg...
Citation: Yu, C., Wei, H., Wang, X., Le, A. T., Lu, R. F., & Lin, C. D. (2015). Reconstruction of tw...
Citation: Yu, C., Wei, H., Wang, X., Le, A. T., Lu, R. F., & Lin, C. D. (2015). Reconstruction of tw...
Citation: Pullen, M. G., Wolter, B., Le, A. T., Baudisch, M., Hemmer, M., Senftleben, A., . . . Bieg...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...
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...
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...
Observing changes in molecular structure requires atomic-scale Ångstrom and femtosecond spatio-tempo...
Imaging the microscopic world in real space and real time is a grand challenge of science. In the la...
Citation: Pullen, M. G., Wolter, B., Le, A. T., Baudisch, M., Hemmer, M., Senftleben, A., . . . Bieg...
Citation: Yu, C., Wei, H., Wang, X., Le, A. T., Lu, R. F., & Lin, C. D. (2015). Reconstruction of tw...
Citation: Yu, C., Wei, H., Wang, X., Le, A. T., Lu, R. F., & Lin, C. D. (2015). Reconstruction of tw...
Citation: Pullen, M. G., Wolter, B., Le, A. T., Baudisch, M., Hemmer, M., Senftleben, A., . . . Bieg...
Visualizing molecular transformations in real-time requires a structural retrieval method with Ångst...