The motion of atoms in molecules and in the course of reactions occurs on infinitesimal length and time scales, down to the angstrom (0.1 nm or 10^(-8) cm) length and femtosecond (10^(-15) s) time scales. To observe the behavior of atoms in motion, which is fundamental to chemical and biological transformations of molecular structures, femtosecond "stop-motion photography" with lasers is the methodology employed. This contribution highlights the basic concepts involved in the methodology and in the development of the field of femtochemistry. The concepts are described with the aid of a laser demonstration designed at Caltech and used elsewhere as an exhibit
Femtoscience offers a unique way to understand the dynamics in physics, chemistry and biology. This ...
With the recent advances in ultrabright electron and x-ray sources, it is now possible to extend cry...
Observing molecules in action through the recording of “molecular movies”, i. e., their spatiotempor...
Over many millennia, humankind has thought to explore phenomena on an ever shorter time scale. In th...
Femtochemistry is concerned with the very act of the molecular motion that brings about chemistry, ...
This review highlights, with a historical perspective, the development of the field, with focus on t...
Theoretical femtosecond physics is a new field of research. Theoretical investigations of atoms and ...
Theoretical investigations of atoms and molecules interacting with pulsed or continuous wave lasers ...
International audienceBasic techniques in ultrafast time-resolved optical spectroscopy and x-ray dif...
This book presents the latest developments in Femtosecond Chemistry and Physics for the study of ult...
Our scientific understanding of the static or time-averaged structure of condensed matter on the ato...
Observing molecules in action through the recording of “molecular movies”, i. e., their spatiotempor...
Recent advances in high-intensity electron and X-ray pulsed sources now make it possible to directly...
The methods producing cold molecules from cold atoms tend to leave molecular ensembles with substant...
Femtoscience offers a unique way to understand the dynamics in physics, chemistry and biology. This ...
With the recent advances in ultrabright electron and x-ray sources, it is now possible to extend cry...
Observing molecules in action through the recording of “molecular movies”, i. e., their spatiotempor...
Over many millennia, humankind has thought to explore phenomena on an ever shorter time scale. In th...
Femtochemistry is concerned with the very act of the molecular motion that brings about chemistry, ...
This review highlights, with a historical perspective, the development of the field, with focus on t...
Theoretical femtosecond physics is a new field of research. Theoretical investigations of atoms and ...
Theoretical investigations of atoms and molecules interacting with pulsed or continuous wave lasers ...
International audienceBasic techniques in ultrafast time-resolved optical spectroscopy and x-ray dif...
This book presents the latest developments in Femtosecond Chemistry and Physics for the study of ult...
Our scientific understanding of the static or time-averaged structure of condensed matter on the ato...
Observing molecules in action through the recording of “molecular movies”, i. e., their spatiotempor...
Recent advances in high-intensity electron and X-ray pulsed sources now make it possible to directly...
The methods producing cold molecules from cold atoms tend to leave molecular ensembles with substant...
Femtoscience offers a unique way to understand the dynamics in physics, chemistry and biology. This ...
With the recent advances in ultrabright electron and x-ray sources, it is now possible to extend cry...
Observing molecules in action through the recording of “molecular movies”, i. e., their spatiotempor...