The description of excited state dynamics in energy transfer systems constitutes a theoretical and experimental challenge in modern chemical physics. A spectroscopic protocol that systematically characterizes both coherent and dissipative processes of the probed chromophores is desired. Here, we show that a set of two-color photon-echo experiments performs quantum state tomography (QST) of the one-exciton manifold of a dimer by reconstructing its density matrix in real time. This possibility in turn allows for a complete description of excited state dynamics via quantum process tomography (QPT). Simulations of a noisy QPT experiment for an inhomogeneously broadened ensemble of model excitonic dimers show that the protocol distills rich info...
Long-lived electronic coherences in various photosynthetic complexes at cryogenic and room temperatu...
Excitation energy transfer and charge separation are crucial steps in natural photosynthesis that al...
Absorption of sunlight generates renewable electricity and powers the growth of plants, but also cau...
Long-lived exciton coherences have been recently observed in photosynthetic complexes via ultrafast ...
AbstractLong-lived electronic coherences in various photosynthetic complexes at cryogenic and room t...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 1999.Measuring the density operator o...
Chemical reaction and optical dynamics in the liquid phase are strongly affected by specific solute-...
With ultrashort pulses one can initiate molecular processes at well-defined moments in time, and tak...
A biomolecular chromophore can be viewed as a quantum system with a small number of degrees of freed...
The broad linewidths in absorption spectra of photosynthetic complexes obscure information related t...
Author Institution: Department of Chemistry, The University of Chicago, Chicago USAExcited states in...
Ultrafast spectroscopy experiments show that photosynthetic systems can preserve quantum beats in th...
Unraveling the interplay between electronic- and vibrational degrees of freedom on the earliest time...
We have developed an enhanced technique for characterizing quantum optical processes based on probin...
Quantum process tomography is used to fully characterize the evolution of the quantum vibrational st...
Long-lived electronic coherences in various photosynthetic complexes at cryogenic and room temperatu...
Excitation energy transfer and charge separation are crucial steps in natural photosynthesis that al...
Absorption of sunlight generates renewable electricity and powers the growth of plants, but also cau...
Long-lived exciton coherences have been recently observed in photosynthetic complexes via ultrafast ...
AbstractLong-lived electronic coherences in various photosynthetic complexes at cryogenic and room t...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 1999.Measuring the density operator o...
Chemical reaction and optical dynamics in the liquid phase are strongly affected by specific solute-...
With ultrashort pulses one can initiate molecular processes at well-defined moments in time, and tak...
A biomolecular chromophore can be viewed as a quantum system with a small number of degrees of freed...
The broad linewidths in absorption spectra of photosynthetic complexes obscure information related t...
Author Institution: Department of Chemistry, The University of Chicago, Chicago USAExcited states in...
Ultrafast spectroscopy experiments show that photosynthetic systems can preserve quantum beats in th...
Unraveling the interplay between electronic- and vibrational degrees of freedom on the earliest time...
We have developed an enhanced technique for characterizing quantum optical processes based on probin...
Quantum process tomography is used to fully characterize the evolution of the quantum vibrational st...
Long-lived electronic coherences in various photosynthetic complexes at cryogenic and room temperatu...
Excitation energy transfer and charge separation are crucial steps in natural photosynthesis that al...
Absorption of sunlight generates renewable electricity and powers the growth of plants, but also cau...