For the investigation of processes happening on the time scale of the motion of bound electrons, well-controlled X-ray pulses with durations in the few-femtosecond and even sub-femtosecond range are a necessary prerequisite. Novel free-electron lasers sources provide these ultrashort, high-brightness X-ray pulses, but their unique aspects open up concomitant challenges for their characterization on a suitable time scale. In this review paper we describe progress and results of recent work on ultrafast pulse characterization at soft and hard X-ray free-electron lasers. We report on different approaches to laser-assisted time-domain measurements, with specific focus on single-shot characterization of ultrashort X-ray pulses from self-amplifie...
We propose a novel method to characterize the temporal duration and shape of femtosecond x-ray pulse...
We propose a novel method to characterize the temporal duration and shape of femtosecond x-ray pulse...
The goal of this dissertation was to investigate a reliable single-shot pulse duration diagnostic to...
For the investigation of processes happening on the time scale of the motion of bound electrons, wel...
The ability to fully characterize ultrashort, ultra-intense X-ray pulses at free-electron lasers (FE...
X-ray free-electron lasers (FELs) open up new frontiers in photon science, which is a consequence of...
Short-wavelength free-electron lasers are now well established as essential and unrivalled sources o...
X-ray free-electron lasers, with pulse durations ranging from a few to several hundred femtoseconds,...
The successful operation of x-ray free-electron lasers (FELs), like the Linac Coherent Light Source ...
X-ray free-electron lasers (FELs) provide cutting-edge tools for fundamental researches to study nat...
The successful operation of X-ray free-electron lasers (FELs), like the Linac Coherent Light Sourceo...
Highly brilliant, coherent, femtosecond x-ray pulses delivered by free-electron lasers (FELs) consti...
One of the most challenging tasks for extreme ultraviolet, soft and hard x-ray free-electron laser p...
Highly brilliant, coherent, femtosecond x ray pulses delivered by free electron lasers FELs consti...
We propose a novel method to characterize the temporal duration and shape of femtosecond x-ray pulse...
We propose a novel method to characterize the temporal duration and shape of femtosecond x-ray pulse...
The goal of this dissertation was to investigate a reliable single-shot pulse duration diagnostic to...
For the investigation of processes happening on the time scale of the motion of bound electrons, wel...
The ability to fully characterize ultrashort, ultra-intense X-ray pulses at free-electron lasers (FE...
X-ray free-electron lasers (FELs) open up new frontiers in photon science, which is a consequence of...
Short-wavelength free-electron lasers are now well established as essential and unrivalled sources o...
X-ray free-electron lasers, with pulse durations ranging from a few to several hundred femtoseconds,...
The successful operation of x-ray free-electron lasers (FELs), like the Linac Coherent Light Source ...
X-ray free-electron lasers (FELs) provide cutting-edge tools for fundamental researches to study nat...
The successful operation of X-ray free-electron lasers (FELs), like the Linac Coherent Light Sourceo...
Highly brilliant, coherent, femtosecond x-ray pulses delivered by free-electron lasers (FELs) consti...
One of the most challenging tasks for extreme ultraviolet, soft and hard x-ray free-electron laser p...
Highly brilliant, coherent, femtosecond x ray pulses delivered by free electron lasers FELs consti...
We propose a novel method to characterize the temporal duration and shape of femtosecond x-ray pulse...
We propose a novel method to characterize the temporal duration and shape of femtosecond x-ray pulse...
The goal of this dissertation was to investigate a reliable single-shot pulse duration diagnostic to...