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Quantum Thermodynamics
Enhancing light-harvesting power with coherent vibrational interactions: a quantum heat engine picture
arXiv
Authors: Nathan Killoran, Susana F. Huelga, Martin B. Plenio
Year
2014
Paper ID
45943
Status
Preprint
Abstract Read
~2 min
Abstract Words
124
Citations
N/A
Abstract
Recent evidence suggests that quantum effects may have functional importance in biological light-harvesting systems. Along with delocalized electronic excitations, it is now suspected that quantum coherent interactions with certain near-resonant vibrations may contribute to light-harvesting performance. However, the actual quantum advantage offered by such coherent vibrational interactions has not yet been established. We investigate a quantum design principle, whereby coherent exchange of single energy quanta between electronic and vibrational degrees of freedom can enhance a light-harvesting system's power above what is possible by thermal mechanisms alone. We present a prototype quantum heat engine which cleanly illustrates this quantum design principle, and quantify its quantum advantage using thermodynamic measures of performance. We also demonstrate the principle's relevance in parameter regimes connected to natural light-harvesting structures.
Why This Paper Matters
- This paper contributes to the Quantum Thermodynamics research area in the Quantum Articles archive.
- It adds a 2014 reference point for readers tracking recent quantum research.
- Recent evidence suggests that quantum effects may have functional importance in biological light-harvesting systems.
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