Single-electron wavefunctions, or orbitals, are the mathematical constructs used to describe the multi-electron wavefunction of molecules. Because the highest-lying orbitals are responsible for chemical properties, they are of particular interest. To observe these orbitals change as bonds are formed and broken is to observe the essence of chemistry. Yet single orbitals are difficult to observe experimentally, and until now, this has been impossible on the timescale of chemical reactions. Here we demonstrate that the full three-dimensional structure of a single orbital can be imaged by a seemingly unlikely technique, using high harmonics generated from intense femtosecond laser pulses focused on aligned molecules. Applying this approach to a...
AbstractThe frontier orbitals of molecules are the prime determinants of their chemical, optical and...
The spatial properties of atomic wavefunctions were probed through the strong field process of high ...
High harmonics produced in aligned molecules contain structural information of bound-state electroni...
International audienceHigh-order harmonic generation in aligned molecules can be used as an ultrafas...
It was recently shown that the highest molecular orbital of N2 could be reconstructed from a series ...
Strong-field light\u2013matter interactions can encode the spatial properties of the electronic wave...
International audienceWe address the feasibility of imaging geometric and orbital structure of a pol...
Frontier orbitals determine fundamental molecular properties such as chemical reactivities. Although...
International audienceA strong laser field may tunnel ionize a molecule from several orbitals simult...
High harmonic radiation is produced when atoms or molecules are ionized by an intense femtosecond la...
Imaging isolated molecules in three dimensions with atomic resolution is important for elucidating c...
Laser-induced electron diffraction is an evolving tabletop method that aims to image ultrafast struc...
As one of the fundamental concepts of quantum mechanics, electrons in atoms and molecules are assign...
We explore the laser-induced ionization dynamics of N2 and CO2 molecules subjected to a few-cycle, l...
Ultrafast electron diffraction has emerged since the end of last century, and has become an increasi...
AbstractThe frontier orbitals of molecules are the prime determinants of their chemical, optical and...
The spatial properties of atomic wavefunctions were probed through the strong field process of high ...
High harmonics produced in aligned molecules contain structural information of bound-state electroni...
International audienceHigh-order harmonic generation in aligned molecules can be used as an ultrafas...
It was recently shown that the highest molecular orbital of N2 could be reconstructed from a series ...
Strong-field light\u2013matter interactions can encode the spatial properties of the electronic wave...
International audienceWe address the feasibility of imaging geometric and orbital structure of a pol...
Frontier orbitals determine fundamental molecular properties such as chemical reactivities. Although...
International audienceA strong laser field may tunnel ionize a molecule from several orbitals simult...
High harmonic radiation is produced when atoms or molecules are ionized by an intense femtosecond la...
Imaging isolated molecules in three dimensions with atomic resolution is important for elucidating c...
Laser-induced electron diffraction is an evolving tabletop method that aims to image ultrafast struc...
As one of the fundamental concepts of quantum mechanics, electrons in atoms and molecules are assign...
We explore the laser-induced ionization dynamics of N2 and CO2 molecules subjected to a few-cycle, l...
Ultrafast electron diffraction has emerged since the end of last century, and has become an increasi...
AbstractThe frontier orbitals of molecules are the prime determinants of their chemical, optical and...
The spatial properties of atomic wavefunctions were probed through the strong field process of high ...
High harmonics produced in aligned molecules contain structural information of bound-state electroni...