We present a theoretical framework for the analysis of ultrafast X-ray scattering experiments using nonadiabatic quantum molecular dynamics simulations of photochemical dynamics. A detailed simulation of a pump-probe experiment in ethylene is used to examine the sensitivity of the scattering signal to simulation parameters. The results are robust with respect to the number of wavepackets included in the total expansion of the molecular wave function. Overall, the calculated scattering signals correlate closely with the dynamics of the molecule
International audienceWe review the tremendous advances in ultrafast X-ray science, over the past 15...
Computational spectroscopy is becoming a mandatory tool for the interpretation of the complex, and o...
The development of intense XUV sources through free-electron lasers (FELs) and high-order harmonic g...
Although photochemical reactivity has been extensively studied, a clear picture of the underlying d...
We compare ultrafast electron and X-ray diffraction using quantum molecular dynamics simulations in ...
Resonant inelastic soft X-ray scattering maps for the water molecule are simulated by combining quan...
Resonant inelastic soft X-ray scattering maps for the water molecule are simulated by combining quan...
The advent of x-ray free electron lasers offers new opportunities for x-ray scattering (XRS) studies...
CONSPECTUS: Recent developments in nonadiabatic dynamics enabled ab inito simulations of complex ult...
The excited state non-adiabatic dynamics of polyatomic molecules, leading to the coupling of structu...
We theoretically examine time-resolved diffraction from molecules which undergo non-adiabatic dynami...
Abstract Absorption of sunlight generates renewable electricity and powers the growth of plants, bu...
Absorption of sunlight generates renewable electricity and powers the growth of plants, but also cau...
Time-resolved ultrafast x-ray scattering from photoexcited matter is an emerging method to image ult...
The processes which occur after molecules absorb light underpin an enormous range of fundamental tec...
International audienceWe review the tremendous advances in ultrafast X-ray science, over the past 15...
Computational spectroscopy is becoming a mandatory tool for the interpretation of the complex, and o...
The development of intense XUV sources through free-electron lasers (FELs) and high-order harmonic g...
Although photochemical reactivity has been extensively studied, a clear picture of the underlying d...
We compare ultrafast electron and X-ray diffraction using quantum molecular dynamics simulations in ...
Resonant inelastic soft X-ray scattering maps for the water molecule are simulated by combining quan...
Resonant inelastic soft X-ray scattering maps for the water molecule are simulated by combining quan...
The advent of x-ray free electron lasers offers new opportunities for x-ray scattering (XRS) studies...
CONSPECTUS: Recent developments in nonadiabatic dynamics enabled ab inito simulations of complex ult...
The excited state non-adiabatic dynamics of polyatomic molecules, leading to the coupling of structu...
We theoretically examine time-resolved diffraction from molecules which undergo non-adiabatic dynami...
Abstract Absorption of sunlight generates renewable electricity and powers the growth of plants, bu...
Absorption of sunlight generates renewable electricity and powers the growth of plants, but also cau...
Time-resolved ultrafast x-ray scattering from photoexcited matter is an emerging method to image ult...
The processes which occur after molecules absorb light underpin an enormous range of fundamental tec...
International audienceWe review the tremendous advances in ultrafast X-ray science, over the past 15...
Computational spectroscopy is becoming a mandatory tool for the interpretation of the complex, and o...
The development of intense XUV sources through free-electron lasers (FELs) and high-order harmonic g...