We report experimental results on the diffractive imaging of three-dimensionally aligned 2,5-diiodothiophene molecules. The molecules were aligned by chirped near-infrared laser pulses, and their structure was probed at a photon energy of 9.5 keV (lambda approximate to 130 pm) provided by the Linac Coherent Light Source. Diffracted photons were recorded on the Cornell-SLAC pixel array detector, and a two-dimensional diffraction pattern of the equilibrium structure of 2,5-diiodothiophene was recorded. The retrieved distance between the two iodine atoms agrees with the quantum-chemically calculated molecular structure to be within 5%. The experimental approach allows for the imaging of intrinsic molecular dynamics in the molecular frame, albe...
We investigate the molecular structure information contained in the x-ray diffraction patterns of an...
We have successfully determined the internuclear distance of I2 molecules in an alignment laser fiel...
We demonstrate a novel experimental implementation to strongly align molecules at full repetition ra...
We report experimental results on the diffractive imaging of three-dimensionally aligned 2,5-diiodot...
Diffractive imaging of aligned and oriented gas-phase molecules is a promising tool to image molecul...
We report experimental results on x-ray diffraction of quantum-state-selected and strongly aligned e...
We give a detailed account of the theoretical analysis and the experimental results of an X-ray-diff...
We give a detailed account of the theoretical analysis and the experimental results of an x-ray-diff...
The understanding of the temporal evolution of a molecular systems on the atomic level is typically ...
Gas-phase ultrafast electron diffraction (UED) is used to extract information from molecular sources...
Based on the visionary experiments in femtochemistry and ultrafast electron diffraction many details...
Summary form only given. One of the ultimate goals of molecular physics is the possibility of access...
The possibility to study the structure of polyatomic gas-phase molecules by photoelectron difraction...
Folding, isomerization, and dissociation of molecules, i.e., bond breaking and bond formation, is ha...
We report experimental results on x-ray diffraction of quantum-state-selected and strongly aligned e...
We investigate the molecular structure information contained in the x-ray diffraction patterns of an...
We have successfully determined the internuclear distance of I2 molecules in an alignment laser fiel...
We demonstrate a novel experimental implementation to strongly align molecules at full repetition ra...
We report experimental results on the diffractive imaging of three-dimensionally aligned 2,5-diiodot...
Diffractive imaging of aligned and oriented gas-phase molecules is a promising tool to image molecul...
We report experimental results on x-ray diffraction of quantum-state-selected and strongly aligned e...
We give a detailed account of the theoretical analysis and the experimental results of an X-ray-diff...
We give a detailed account of the theoretical analysis and the experimental results of an x-ray-diff...
The understanding of the temporal evolution of a molecular systems on the atomic level is typically ...
Gas-phase ultrafast electron diffraction (UED) is used to extract information from molecular sources...
Based on the visionary experiments in femtochemistry and ultrafast electron diffraction many details...
Summary form only given. One of the ultimate goals of molecular physics is the possibility of access...
The possibility to study the structure of polyatomic gas-phase molecules by photoelectron difraction...
Folding, isomerization, and dissociation of molecules, i.e., bond breaking and bond formation, is ha...
We report experimental results on x-ray diffraction of quantum-state-selected and strongly aligned e...
We investigate the molecular structure information contained in the x-ray diffraction patterns of an...
We have successfully determined the internuclear distance of I2 molecules in an alignment laser fiel...
We demonstrate a novel experimental implementation to strongly align molecules at full repetition ra...