Detection of molecular chirality with high sensitivity and selectivity is important for many analytical and practical applications. Photoionization has emerged as a very sensitive probe of chirality in molecules. We show here that a table top setup with a femtosecond laser and a single imaging detector for both photoelectrons and photoions enables detection of chirality up to 3 orders of magnitude better than the existing conventional absorption based techniques
Chiral effects appear in a wide variety of natural phenomena and are of fundamental importance in sc...
Chiral light-matter interactions have been investigated for two centuries, leading to the discovery ...
We demonstrate that an ultimately sensitive chiroptical measurement at single femtosecond pulse leve...
Detection of molecular chirality with high sensitivity and selectivity is important for many analyti...
LettersInternational audienceChiral molecules that are non-superimposable mirror images of each othe...
The absence of mirror symmetry in the structure of a molecule, or chirality, is of fundamental impor...
In this Perspective we discuss photoelectron circular dichroism (PECD), a relatively novel technique...
Chirality is prevalent in the natural environment. Systems of biological significance more often tha...
Chirality is a geometric property that characterizes objects that cannot be superposed on their mirr...
Chiral molecules interact and react differently with other chiral objects, depending on their handed...
Molecular chirality plays an essential role in most biochemical processes. The observation and quant...
Ultrashort circularly polarised light pulses from free-electron lasers offer a route for exploring c...
This is the plotting data and plotting scripts for the publication: “Ultrafast imaging of molecular ...
We derive here a highly selective photoelectron-based chirality-sensing technique that utilizes "loc...
Understanding the chirality of molecular reaction pathways is essential for a broad range of fundame...
Chiral effects appear in a wide variety of natural phenomena and are of fundamental importance in sc...
Chiral light-matter interactions have been investigated for two centuries, leading to the discovery ...
We demonstrate that an ultimately sensitive chiroptical measurement at single femtosecond pulse leve...
Detection of molecular chirality with high sensitivity and selectivity is important for many analyti...
LettersInternational audienceChiral molecules that are non-superimposable mirror images of each othe...
The absence of mirror symmetry in the structure of a molecule, or chirality, is of fundamental impor...
In this Perspective we discuss photoelectron circular dichroism (PECD), a relatively novel technique...
Chirality is prevalent in the natural environment. Systems of biological significance more often tha...
Chirality is a geometric property that characterizes objects that cannot be superposed on their mirr...
Chiral molecules interact and react differently with other chiral objects, depending on their handed...
Molecular chirality plays an essential role in most biochemical processes. The observation and quant...
Ultrashort circularly polarised light pulses from free-electron lasers offer a route for exploring c...
This is the plotting data and plotting scripts for the publication: “Ultrafast imaging of molecular ...
We derive here a highly selective photoelectron-based chirality-sensing technique that utilizes "loc...
Understanding the chirality of molecular reaction pathways is essential for a broad range of fundame...
Chiral effects appear in a wide variety of natural phenomena and are of fundamental importance in sc...
Chiral light-matter interactions have been investigated for two centuries, leading to the discovery ...
We demonstrate that an ultimately sensitive chiroptical measurement at single femtosecond pulse leve...