首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Multiscale Electrodynamics/Time-Dependent Density Functional Theory Modeling of Coupled Plasmon/Molecule Excitations
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APS -APS March Meeting 2017 - Event - Multiscale Electrodynamics/Time-Dependent Density Functional Theory Modeling of Coupled Plasmon/Molecule Excitations

机译:APS -APS 2017年3月会议-活动-等离激元/分子激发的多尺度电动力学/时变密度泛函理论建模

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摘要

The coupled dynamics of molecular chromophores and plasmons at surface of metal nanostructures are important for a range of processes such as molecular sensing, light harvesting, and near-field photochemistry. Modeling these dynamics from first principles, however, is challenging, as the large system sizes precludes a purely quantum mechanical treatment. In this talk I will present an approach based on propagating the plasmonic currents and fields using electrodynamics (finite-difference time-domain) with each chromophore described using an isolated quantum sub-region embedded in the overall classical background. This approach can be readily parallelized over these quantum regions, which enables large multiscale simulations of tens or hundreds of dyes, each of which is described individually by real-time time-dependent density functional theory. Application to gold nanoparticles coated with malachite green and rhodamine 6G monolayers shows good agreement with experimentally measured coupling spectra, including the polariton peaks, as well as the plasmon and molecular depletions.
机译:金属纳米结构表面上的分子发色团和等离激元的耦合动力学对于一系列过程(例如分子传感,光收集和近场光化学)非常重要。然而,由于第一系统的原理对这些动力学进行建模具有挑战性,因为大型系统无法进行纯量子力学处理。在本次演讲中,我将介绍一种方法,该方法基于使用电动力学(有限差分时域)传播等离子体电流和场的方法,每个生色团都使用嵌入整体经典背景中的孤立量子子区域进行描述。这种方法可以很容易地在这些量子区域上并行化,从而可以对数十种或数百种染料进行大规模的多尺度模拟,每种染料均通过实时的随时间变化的密度泛函理论进行单独描述。在孔雀石绿和若丹明6G单层涂层金纳米颗粒上的应用与实验测量的耦合光谱(包括极化子峰,等离激元和分子耗竭)表现出良好的一致性。

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