This work introduces two experimental approaches to control quantum dynamics in molecules, employing core electrons as messengers. A laser source providing ultrashort pulses has been developed to access the timescale of electronic and structural dynamics inside molecules. Pulses of few-cycle durations in the 1 μm to 2 μm short-wavelength infrared (SWIR) spectral region provide intensities up to 10^15 W/cm^2. In combination with a vacuum beamline, this experimental setup allows for ultrafast laser control of molecular dynamics probed by core-electron transitions via x-ray absorption spectroscopy (XAS). The first experiment investigates the manipulation of molecular electronic structure. Here, a soft x-ray (SXR) pulse probes simultaneously ...
The direct observation of molecular dynamics initiated by x-rays has been hindered to date by the la...
The past two decades have seen rapid developments in short-pulse X-ray sources, which have enabled t...
Although photochemical reactivity has been extensively studied, a clear picture of the underlying d...
This work introduces two experimental approaches to control quantum dynamics in molecules, employing...
Quantum mechanical motion of electrons in atoms and molecules is at the heart of many photophysical ...
Recent developments of isolated, sub-femtosecond light pulses generated via upconversion of commerci...
The advent of free electron lasers and high harmonic sources enables the investigation of electronic...
Time-resolved investigations of ultrafast electronic and molecular dynamics were not possible until ...
Electronic interactions play a fundamental role in atoms, molecular structure and reactivity. We int...
Controlling attosecond electron wavepackets and soft x-ray pulses represents a formidable challenge ...
This paper reviews recent progress in experiments to control quantum dynamics in condensed phase and...
By theoretical calculation, we demonstrate the possibility to control and partially suppress the Cou...
7This book documents the recent vivid developments in the research field of ultrashort intense light...
Ultrafast femtosecond (10-15 s) dynamics of atomic xenon, vinyl bromide and carbon disulfide molecul...
The physical and chemical properties of matter are to a high degree determined by the electronic str...
The direct observation of molecular dynamics initiated by x-rays has been hindered to date by the la...
The past two decades have seen rapid developments in short-pulse X-ray sources, which have enabled t...
Although photochemical reactivity has been extensively studied, a clear picture of the underlying d...
This work introduces two experimental approaches to control quantum dynamics in molecules, employing...
Quantum mechanical motion of electrons in atoms and molecules is at the heart of many photophysical ...
Recent developments of isolated, sub-femtosecond light pulses generated via upconversion of commerci...
The advent of free electron lasers and high harmonic sources enables the investigation of electronic...
Time-resolved investigations of ultrafast electronic and molecular dynamics were not possible until ...
Electronic interactions play a fundamental role in atoms, molecular structure and reactivity. We int...
Controlling attosecond electron wavepackets and soft x-ray pulses represents a formidable challenge ...
This paper reviews recent progress in experiments to control quantum dynamics in condensed phase and...
By theoretical calculation, we demonstrate the possibility to control and partially suppress the Cou...
7This book documents the recent vivid developments in the research field of ultrashort intense light...
Ultrafast femtosecond (10-15 s) dynamics of atomic xenon, vinyl bromide and carbon disulfide molecul...
The physical and chemical properties of matter are to a high degree determined by the electronic str...
The direct observation of molecular dynamics initiated by x-rays has been hindered to date by the la...
The past two decades have seen rapid developments in short-pulse X-ray sources, which have enabled t...
Although photochemical reactivity has been extensively studied, a clear picture of the underlying d...