Continuing technical advances in the creation of (sub-) femtosecond VUV and X-ray pulses with Free-Electron Lasers and laser-based high-harmonic-generation sources have created new opportunities for studying ultrafast dynamics during chemical reactions. Here, we present an approach to image the geometric structure of gas-phase molecules with fewfemtosecond temporal and sub-Ångström spatial resolution using femtosecond photoelectron diffraction. This technique allows imaging the molecules “from within” by analyzing the diffraction of inner-shell photoelectrons that are created by femtosecond VUV and X-ray pulses. Using pump-probe schemes, ultrafast structural changes during photochemical reactions can thus be directly visualized with a tempo...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
Continuing technical advances in the creation of (sub-) femtosecond VUV and X-ray pulses with Free-E...
Continuing technical advances in the creation of (sub-) femtosecond VUV and X-ray pulses with Free-E...
Continuing technical advances in the creation of (sub-) femtosecond VUV and X-ray pulses with Free-E...
We demonstrate an experimental method to record snapshot diffraction images of polyatomic gas-phase ...
We demonstrate an experimental method to record snapshot diffraction images of polyatomic gas-phase ...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
The possibility to study the structure of polyatomic gas-phase molecules by photoelectron diffractio...
The possibility to study the structure of polyatomic gas-phase molecules by photoelectron diffractio...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
We demonstrate an experimental method to record snapshot diffraction images of polyatomic gas-phase ...
The possibility to study the structure of polyatomic gas-phase molecules by photoelectron difraction...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
Continuing technical advances in the creation of (sub-) femtosecond VUV and X-ray pulses with Free-E...
Continuing technical advances in the creation of (sub-) femtosecond VUV and X-ray pulses with Free-E...
Continuing technical advances in the creation of (sub-) femtosecond VUV and X-ray pulses with Free-E...
We demonstrate an experimental method to record snapshot diffraction images of polyatomic gas-phase ...
We demonstrate an experimental method to record snapshot diffraction images of polyatomic gas-phase ...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
The possibility to study the structure of polyatomic gas-phase molecules by photoelectron diffractio...
The possibility to study the structure of polyatomic gas-phase molecules by photoelectron diffractio...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
We demonstrate an experimental method to record snapshot diffraction images of polyatomic gas-phase ...
The possibility to study the structure of polyatomic gas-phase molecules by photoelectron difraction...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectr...