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Characterization and quantification of the role of coherence in ultrafast quantum biological experiments using quantum master equations, atomistic simulations, and quantum process tomography
Patrick Rebentrost, Sangwoo Shim, Joel Yuen-Zhou +1
Long-lived electronic coherences in various photosynthetic complexes at cryogenic and room temperature have generated vigorous efforts both in theory and experiment to understand t…
Exciton-phonon information flow in the energy transfer process of photosynthetic complexes
Patrick Rebentrost, Alán Aspuru-Guzik
Non-Markovian and non-equilibrium phonon effects are believed to be key ingredients in the energy transfer in photosynthetic complexes, especially in complexes which exhibit a regi…
Optimal control of a leaking qubit
Patrick Rebentrost, Frank K. Wilhelm
Physical implementations of quantum bits can contain coherent transitions to energetically close non-qubit states. In particular, for anharmonic oscillator systems such as the supe…
Environment-Assisted Quantum Transport
Patrick Rebentrost, Masoud Mohseni, Ivan Kassal +2
Transport phenomena at the nanoscale are of interest due to the presence of both quantum and classical behavior. In this work, we demonstrate that quantum transport efficiency can…
Role of quantum coherence in chromophoric energy transport
Patrick Rebentrost, Masoud Mohseni, Alán Aspuru-Guzik
The role of quantum coherence and the environment in the dynamics of excitation energy transfer is not fully understood. In this work, we introduce the concept of dynamical contrib…
Environment-Assisted Quantum Walks in Photosynthetic Energy Transfer
Masoud Mohseni, Patrick Rebentrost, Seth Lloyd +1
Energy transfer within photosynthetic systems can display quantum effects such as delocalized excitonic transport. Recently, direct evidence of long-lived coherence has been experi…