Diffraction from laser-aligned molecules has been proposed as a method for determining 3-D molecular structures in the gas phase. However, existing structural retrieval algorithms are limited by the imperfect alignment in experiments and the rotational averaging in 1-D alignment. Here, we demonstrate a two-step reconstruction comprising a genetic algorithm that corrects for the imperfect alignment followed by an iterative phase retrieval method in cylindrical coordinates. The algorithm was tested with simulated diffraction patterns. We show that the full 3-D structure of trifluorotoluene, an asymmetric-top molecule, can be reconstructed with atomic resolution
We experimentally demonstrate field-free, three-dimensional alignment (FF3DA) of polyatomic asymmetr...
Laser-induced electron diffraction is a developing dynamical imaging technique that is already able ...
Imaging isolated molecules in three dimensions with atomic resolution is important for elucidating c...
Diffraction from laser-aligned molecules has been proposed as a method for determining 3-D molecular...
Diffraction from laser-aligned molecules has been proposed as a method for determining 3-D molecular...
We investigate the molecular structure information contained in the x-ray diffraction patterns of an...
Diffraction from the individual molecules of a molecular beam, aligned parallel to a single axis by ...
Ubiquitous to most molecular scattering methods is the challenge to retrieve bond distance and angle...
AbstractRecovering the three-dimensional structure of molecules is important for understanding their...
A global optimization strategy, based upon application of a genetic algorithm (GA), is demonstrated ...
Free-electron lasers now have the ability to collect X-ray diffraction patterns from individual mole...
Structure determination of organic molecular solids from powder X-ray diffraction data is nowadays c...
Ubiquitous to most molecular scattering methods is the challenge to retrieve bond distance and angl...
Citation: Yu, C., Wei, H., Wang, X., Le, A. T., Lu, R. F., & Lin, C. D. (2015). Reconstruction of tw...
Abstract Currently, our general approach to retrieving molecular structures from ultrafast gas-phase...
We experimentally demonstrate field-free, three-dimensional alignment (FF3DA) of polyatomic asymmetr...
Laser-induced electron diffraction is a developing dynamical imaging technique that is already able ...
Imaging isolated molecules in three dimensions with atomic resolution is important for elucidating c...
Diffraction from laser-aligned molecules has been proposed as a method for determining 3-D molecular...
Diffraction from laser-aligned molecules has been proposed as a method for determining 3-D molecular...
We investigate the molecular structure information contained in the x-ray diffraction patterns of an...
Diffraction from the individual molecules of a molecular beam, aligned parallel to a single axis by ...
Ubiquitous to most molecular scattering methods is the challenge to retrieve bond distance and angle...
AbstractRecovering the three-dimensional structure of molecules is important for understanding their...
A global optimization strategy, based upon application of a genetic algorithm (GA), is demonstrated ...
Free-electron lasers now have the ability to collect X-ray diffraction patterns from individual mole...
Structure determination of organic molecular solids from powder X-ray diffraction data is nowadays c...
Ubiquitous to most molecular scattering methods is the challenge to retrieve bond distance and angl...
Citation: Yu, C., Wei, H., Wang, X., Le, A. T., Lu, R. F., & Lin, C. D. (2015). Reconstruction of tw...
Abstract Currently, our general approach to retrieving molecular structures from ultrafast gas-phase...
We experimentally demonstrate field-free, three-dimensional alignment (FF3DA) of polyatomic asymmetr...
Laser-induced electron diffraction is a developing dynamical imaging technique that is already able ...
Imaging isolated molecules in three dimensions with atomic resolution is important for elucidating c...