Skip to main content
European Commission logo print header
Zawartość zarchiwizowana w dniu 2022-12-23

Spectroscopy and laser control of ultrafast molecular-scale dynamics of photodissociation and photochemical reactions.

Cel

The scientific aim of the present project is to investigate the molecular dynamics and other ultrafast photo processes, which take place in the molecular systems directly following their excitation, both in the frequency and in the time domain. Laser pulses will be employed as optical trigger to start the processes giving opportunity to study the dynamics of transient states and photoproducts in real time domain. Depending of their intensity, polarization, and wavelength laser radiation may influence in different way the channels through which the photochemical reactions proceed.
The main process of interest is photo dissociation, but also the competition with accompanying processes and between the different channels of the same process. The control of photochemical reactions by laser pulses or by external angular momentum is under our consideration as well. The key issue is to study photo dissociation dynamics in close correlation with fast relaxation processes in parent molecules and to study the formation of photoproducts. Particular attention will be given to the peculiarities of rotational dynamics in the course of photochemical reactions. The time dependent theory of rotational dynamics and polarization response of ensemble of photoproducts will be elaborated in the framework of the project The distinguish feature of the project is to treat the problem for wide scale of objects from simple two and three atomic molecules and ions towards polyatomic organic molecules and in different environments from the gas phase towards the liquid solution and cell structures.

Zaproszenie do składania wniosków

Data not available

System finansowania

NoE - Network of Excellence

Koordynator

University Philipps-Universitaet Marburg
Wkład UE
Brak danych
Adres
Hans-Meerweinstr.
35032 Marburg
Niemcy

Zobacz na mapie

Linki
Koszt całkowity
Brak danych

Uczestnicy (5)