Optimally designed quantum transport across disordered networks
arXiv:1207.4072 · doi:10.1103/PhysRevLett.111.180601
Abstract
We establish a general mechanism for highly efficient quantum transport through finite, disordered 3D networks. It relies on the interplay of disorder with centro-symmetry and a dominant doublet spectral structure, and can be controlled by proper tuning of only coarse-grained quantities. Photosynthetic light harvesting complexes are discussed as potential biological incarnations of this design principle.
7 pages (incl. 2 pages of suppl. mat.), 3 figures
References in corpus (7)
- Perfect Transfer of Arbitrary States in Quantum Spin Networks
- Anderson localization in Bose-Einstein condensates
- Perfect quantum state transfer with randomly coupled quantum chains
- Perfect State Transfer: Beyond Nearest-Neighbor Couplings
- Observation of a resonant four-body interaction in cold cesium Rydberg atoms
- Controlled engineering of extended states in disordered systems
- The optimization topography of exciton transport
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