The ability to fully characterize ultrashort, ultra-intense X-ray pulses at free-electron lasers (FELs) will be crucial in experiments ranging from single-molecule imaging to extreme-timescale X-ray science. This issue is especially important at current-generation FELs, which are primarily based on self-amplified spontaneous emission and radiate with parameters that fluctuate strongly from pulse to pulse. Using single-cycle terahertz pulses from an optical laser, we have extended the streaking techniques of attosecond metrology to measure the temporal profile of individual FEL pulses with 5 fs full-width at half-maximum accuracy, as well as their arrival on a time base synchronized to the external laser to within 6 fs r.m.s. Optical laser-d...
The goal of this dissertation was to investigate a reliable single-shot pulse duration diagnostic to...
Featured Application Herein, an innovative methodology, called X-ray chronoscopy, is proposed for ex...
We propose a novel method to characterize the temporal duration and shape of femtosecond x-ray pulse...
The ability to fully characterize ultrashort, ultra-intense X-ray pulses at free-electron lasers (FE...
For the investigation of processes happening on the time scale of the motion of bound electrons, wel...
X-ray free-electron lasers (FELs) open up new frontiers in photon science, which is a consequence of...
X-ray free-electron lasers (FELs) provide cutting-edge tools for fundamental researches to study nat...
Highly brilliant, coherent, femtosecond x-ray pulses delivered by free-electron lasers (FELs) consti...
Highly brilliant, coherent, femtosecond x ray pulses delivered by free electron lasers FELs consti...
A few femtosecond X ray streak camera has been realized using a pump probe scheme that samples the t...
The time–energy information of ultrashort X-ray free-electron laser pulses generated by the Linac Co...
Short-wavelength free-electron lasers are now well established as essential and unrivalled sources o...
The ultra-bright short-pulsed radiation provided by the free electron lasers (FEL) is used for many ...
Over the last 20 years, enormous effort has been invested in the development and construction of fre...
The goal of this dissertation was to investigate a reliable single-shot pulse duration diagnostic to...
Featured Application Herein, an innovative methodology, called X-ray chronoscopy, is proposed for ex...
We propose a novel method to characterize the temporal duration and shape of femtosecond x-ray pulse...
The ability to fully characterize ultrashort, ultra-intense X-ray pulses at free-electron lasers (FE...
For the investigation of processes happening on the time scale of the motion of bound electrons, wel...
X-ray free-electron lasers (FELs) open up new frontiers in photon science, which is a consequence of...
X-ray free-electron lasers (FELs) provide cutting-edge tools for fundamental researches to study nat...
Highly brilliant, coherent, femtosecond x-ray pulses delivered by free-electron lasers (FELs) consti...
Highly brilliant, coherent, femtosecond x ray pulses delivered by free electron lasers FELs consti...
A few femtosecond X ray streak camera has been realized using a pump probe scheme that samples the t...
The time–energy information of ultrashort X-ray free-electron laser pulses generated by the Linac Co...
Short-wavelength free-electron lasers are now well established as essential and unrivalled sources o...
The ultra-bright short-pulsed radiation provided by the free electron lasers (FEL) is used for many ...
Over the last 20 years, enormous effort has been invested in the development and construction of fre...
The goal of this dissertation was to investigate a reliable single-shot pulse duration diagnostic to...
Featured Application Herein, an innovative methodology, called X-ray chronoscopy, is proposed for ex...
We propose a novel method to characterize the temporal duration and shape of femtosecond x-ray pulse...