Ultrafast two-pulse experiments on single molecules are invaluable tools to investigate the microscopic dynamics of a fluorophore. The first pulse generates electronic or vibronic coherence and the second pulse probes the time-evolution of the coherence. A protocol that is able to simulate ultrafast experiments on single molecules is applied in this study. It is based on a coupled quantum-mechanical description of the fluorophore and real-time dynamics of the system vibronic wave packet interacting with an electric field, described by means of the stochastic Schrödinger equation within the Markovian limit. This approach is applied to the DNQDI fluorophore, previously investigated experimentally [D. Brinks et al., Nature, 2010, 465, 905-908]...
Time- and frequency-gated spontaneous emission signals are calculated for electron-transfer systems....
Abstract. We present a single-molecule study on femtosecond dynamics in multichromophoric systems, c...
The description of excited state dynamics in energy transfer systems constitutes a theoretical and e...
Ultrafast two-pulse experiments on single molecules are invaluable tools to investigate the microsco...
Ultrafast two-pulse experiments on single molecules are invaluable tools to investigate the microsco...
3Revealing possible long-living coherence in ultrafast processes allows detecting genuine quantum me...
The dynamics of bulk material usually appears as continuous variation because of the group effect. B...
AbstractLong-lived electronic coherences in various photosynthetic complexes at cryogenic and room t...
An all-pervading feature of the work presented in this thesis is the study of ultrafast dynamics, bo...
We explore, by theoretical modeling and computer simulations, how nonadiabatic couplings of excited ...
Electro-optical scanning (>1,000 frames/s) with pixel dwell times on the order of the lifetime of th...
Premi extraordinari doctorat 2012-2013Ultrafast pulses allow observation of molecular dynamics with ...
A derivation of Belavkin's stochastic Schrödinger equations is given using quantum filtering theory....
With ultrashort pulses one can initiate molecular processes at well-defined moments in time, and tak...
Several strategies for simulating the ultrafast dynamics of molecules induced by interactions with e...
Time- and frequency-gated spontaneous emission signals are calculated for electron-transfer systems....
Abstract. We present a single-molecule study on femtosecond dynamics in multichromophoric systems, c...
The description of excited state dynamics in energy transfer systems constitutes a theoretical and e...
Ultrafast two-pulse experiments on single molecules are invaluable tools to investigate the microsco...
Ultrafast two-pulse experiments on single molecules are invaluable tools to investigate the microsco...
3Revealing possible long-living coherence in ultrafast processes allows detecting genuine quantum me...
The dynamics of bulk material usually appears as continuous variation because of the group effect. B...
AbstractLong-lived electronic coherences in various photosynthetic complexes at cryogenic and room t...
An all-pervading feature of the work presented in this thesis is the study of ultrafast dynamics, bo...
We explore, by theoretical modeling and computer simulations, how nonadiabatic couplings of excited ...
Electro-optical scanning (>1,000 frames/s) with pixel dwell times on the order of the lifetime of th...
Premi extraordinari doctorat 2012-2013Ultrafast pulses allow observation of molecular dynamics with ...
A derivation of Belavkin's stochastic Schrödinger equations is given using quantum filtering theory....
With ultrashort pulses one can initiate molecular processes at well-defined moments in time, and tak...
Several strategies for simulating the ultrafast dynamics of molecules induced by interactions with e...
Time- and frequency-gated spontaneous emission signals are calculated for electron-transfer systems....
Abstract. We present a single-molecule study on femtosecond dynamics in multichromophoric systems, c...
The description of excited state dynamics in energy transfer systems constitutes a theoretical and e...