LF13695
- The current article provides an exceptional view into the microscopic,
ultrafast world of one single electron inside nature's most simple
molecule.
Our experimental and theoretical work shows how an ultrashort and strong
laser drives the only electron in the chemical bond of a hydrogen
molecular ion on an attosecond time scale (1 attosecond = 10^{-18}
seconds), makes it slosh around and finally splashes it out of the
molecule. This wild splashing electron waves come as a surprise to
scientists who previously assumed that a laser field frees electrons
gently through a narrow tunnel "drilled" into the molecule by the light.
Our work further shows the exciting prospect that the invisible dynamics
of the electron inside a molecule can be mapped onto the momenta of the
electron once it left the molecule and where they become observable.












