Quantum State and Process Tomography of Energy Transfer Systems via Ultrafast Spectroscopy
arXiv:1006.4866 · doi:10.1073/pnas.1110642108
Abstract
The description of excited state dynamics in multichromophoric systems constitutes both a theoretical and experimental challenge in modern physical chemistry. An experimental protocol which can systematically characterize both coherent and dissipative processes at the level of the evolving quantum state of the chromophores is desired. In this article, we show that a carefully chosen set of polarization controlled two-color heterodyned photon-echo experiments can be used to reconstruct the time-evolving density matrix of the one-exciton manifold of a heterodimer. This possibility in turn allows for a complete description of the excited state dynamics via quantum process tomography (QPT). Calculations on the dimer show that QPT can reveal rich information about system-bath interactions, which otherwise appear nontrivially hidden in the polarization monitored in standard four-wave mixing experiments. Our study presents a novel method for analyzing condensed phase experiments with a quantum information processing perspective.
IMPORTANT: Supporting information in PDF format can be downloaded from source folder
References in corpus (3)
- Conformation of self-assembled porphyrin dimers in liposome vesicles by phase-modulation 2D fluorescence spectroscopy
- Exciton-phonon information flow in the energy transfer process of photosynthetic complexes
- Quantum process tomography of molecular dimers from two-dimensional electronic spectroscopy I: General theory and application to homodimers
Cited by in corpus (36)
- Does coherence enhance transport in photosynthesis?
- Enhancement of Vibronic and Ground-State Vibrational Coherences in 2D Spectra of Photosynthetic Complexes
- Operational approach to open dynamics and quantifying initial correlations
- Modelling Non-Markovian Quantum Processes with Recurrent Neural Networks
- Efficient estimation of energy transfer efficiency in light-harvesting complexes
- Disentangling electronic and vibronic coherences in two-dimensional echo spectra
- Coherent open-loop optimal control of light-harvesting dynamics
- A witness for coherent electronic oscillations in ultrafast spectroscopy
- Energy-scales convergence for optimal and robust quantum transport in photosynthetic complexes
- Secular vs. Non-secular Redfield Dynamics and Fano Coherences in Incoherent Excitation: An Experimental Proposal
- Self-calibrating Quantum State Tomography
- Excitonic diffusion length in complex quantum systems: The effects of disorder and environmental fluctuations on symmetry-enhanced supertransfer
- Realistic and verifiable coherent control of excitonic states in a light harvesting complex
- Positivity in the presence of initial system-environment correlation
- Probing biological light-harvesting phenomena by optical cavities
- Quantum-enhanced tomography of unitary processes
- Maximal entropy approach for quantum state tomography
- Isolating quantum coherence with pathway-selective coherent multi-dimensional spectroscopy
- Continuous variable quantum state tomography of photoelectrons
- Quantum state tomography of molecules by ultrafast diffraction
- Quantum Process Tomography by 2D Fluorescence Spectroscopy
- Ultrafast Mapping of Coherent Dynamics and Density Matrix Reconstruction in Terahertz-Assisted Laser Field
- Finite coupling effects in double quantum dots near equilibrium
- Quantum Process Capability
- Practical Witness for Electronic Coherences
- Analysis of the non-Markovianity for electron transfer reactions in an oligothiophene-fullerene heterojunction
- Calculations of coherent two-dimensional electronic spectra using forward and backward stochastic wavefunctions
- Towards a Spectroscopic Protocol for Unambiguous Detection of Quantum Coherence in Excitonic Energy Transport
- Inverting pump-probe spectroscopy for state tomography of excitonic systems
- Utilizing Microcavities to Suppress Third-order Cascades in Fifth-order Raman Spectra
- Experimental characterization of quantum dynamics through many-body interactions
- Control excitation and coherent transfer in a dimer
- Measuring Time-Dependent Induced Quantum Coherences via Two-Dimensional Coherence Spectroscopy
- Coherent exciton dynamics in supramolecular light-harvesting nanotubes revealed by ultrafast quantum process tomography
- Toward Witnessing Molecular Exciton Entanglement from Spectroscopy
- Spectral Transfer Tensor Method for Non-Markovian Noise Characterization