首页> 外文会议>Quantum Electronics Conference & Lasers and Electro-Optics (CLEO/IQEC/PACIFIC RIM), 2011 >Insights into long-range, high-temperature quantum coherence in quantum dot networks from photosynthesis
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Insights into long-range, high-temperature quantum coherence in quantum dot networks from photosynthesis

机译:通过光合作用洞察量子点网络中的远程高温量子相干性

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Two-dimensional femtosecond spectroscopic studies have suggested some photosynthetic light harvesting protein complexes (LHCs) utilise quantum searches to improve the efficiency of exciton transport through networks of chromophores to chemical reaction centers (RCs) [1–4]. This has stimulated theoretical work in the quantum chemistry and quantum information communities, with particular focus on the so-called Frenkel Hamiltonian, which models chromophores as quantum dots. Findings indicate that high-efficiency exciton transport in individual LHCs is achieved via an interplay between excitonic quantum coherence, resonant vibrations in the surrounding protein matrix, and thermal decoherence [5–13].
机译:二维飞秒光谱研究表明,一些光合光捕获蛋白复合物(LHC)利用量子搜索来提高激子通过发色团网络到达化学反应中心(RC)的效率[1-4]。这激发了量子化学和量子信息界的理论研究,特别是关注所谓的Frenkel Hamiltonian,该模型将发色团建模为量子点。研究结果表明,单个LHCs中的高效激子运输是通过激子量子相干,周围蛋白质基质中的共振振动和热去相干之间的相互作用实现的[5-13]。

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