Scinovex
article Open AccessTop 1% cited

Environment-assisted quantum transport

New Journal of Physics · 2009 · Vol. 11(3) · pp. 033003–033003
Patrick RebentrostMasoud MohseniIvan KassalSeth LloydAlán Aspuru-Guzik

Abstract

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 be enhanced by a dynamical interplay of the system Hamiltonian with pure dephasing induced by a fluctuating environment. This is in contrast to fully coherent hopping that leads to localization in disordered systems, and to highly incoherent transfer that is eventually suppressed by the quantum Zeno effect. We study these phenomena in the Fenna-Matthews-Olson protein complex as a prototype for larger photosynthetic energy transfer systems. We also show that disordered binary tree structures exhibit enhanced transport in the presence of dephasing.

Spectroscopy and Quantum Chemical StudiesQuantum optics and atomic interactionsStrong Light-Matter InteractionsDephasingEnergy transportQuantumQuantum Zeno effectHamiltonian (control theory)Nanoscopic scaleAnderson localizationTransport phenomena
Citations
769
FWCI
40.42
field-weighted impact
References
38
Percentile
100%
vs. same field & year
Citations per year
Cited by
Quantum coherence in biological systems
Journal of Physics Conference Series · 2011 · 332 citations
Control of quantum phenomena: past, present and future
New Journal of Physics · 2010 · 869 citations
Lessons from nature about solar light harvesting
Nature Chemistry · 2011 · 1,875 citations
References
The Zeno’s paradox in quantum theory
Journal of Mathematical Physics · 1977 · 2,210 citations
Dephasing-assisted transport: quantum networks and biomolecules
New Journal of Physics · 2008 · 869 citations
Absence of Diffusion in Certain Random Lattices
Physical Review · 1958 · 12,075 citations
Stochastic resonance
Reviews of Modern Physics · 1998 · 5,279 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.