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相关论文: Exciton scattering in light-harvesting systems of …

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Using the reduced density matrix formalism the time dependence of the exciton scattering in light-harvesting ring systems of purple bacteria is calculated. In contrast to the work of Kumble and Hochstrasser (J. Chem. Phys. 109 (1998) 855)…

化学物理 · 物理学 2009-11-07 Pavel Herman , Ulrich Kleinekathoefer , Ivan Barvik , Michael Schreiber

A minimal, one-parameter model of the excitonic Hamiltonian for the light harvesting complex of purple bacteria (LH2) based on ab initio calculation of the excitonic energies is proposed. The set of input parameters contains positions of…

生物大分子 · 定量生物学 2017-07-31 V. Al. Osipov , Luca De Vico , AndrÉ Anda , Thorsten Hansen

Two distinct approaches, the Frenkel-Dirac time-dependent variation and the Haken-Strobl model, are adopted to study energy transfer dynamics in single-ring and double-ring light-harvesting systems in purple bacteria. It is found that…

化学物理 · 物理学 2015-06-05 Jun Ye , Kewei Sun , Yang Zhao , Yunjin Yu , Chee Kong Lee , Jianshu Cao

Photosynthetic organisms use networks of chromophores to absorb sunlight and deliver the energy to reaction centres, where charge separation triggers a cascade of chemical steps to store the energy. We present a detailed model of the…

We've studied the B800 part of Rhodoblastus acidophilus light-harvesting complex (LH2) by several quantum chemical techniques based on the density functional theory (DFT) and determined the specific method and a minimal reliable model…

化学物理 · 物理学 2024-11-01 L. V. Begunovich , E. A. Kovaleva , M. M. Korshunov , V. F. Shabanov

The dynamics of pigment-pigment and pigment-protein interactions in light-harvesting complexes is studied with a novel approach which combines molecular dynamics (MD) simulations with quantum chemistry (QC) calculations. The MD simulations…

生物物理 · 物理学 2009-11-07 Ana Damjanovic , Ioan Kosztin , Klaus Schulten

Recently, exciton-photon strong coupling has been proposed as a means to control and enhance energy transfer in ensembles of organic molecules. Here, we demonstrate that the exciton dynamics in an archetypal purple bacterial photosynthetic…

Light harvesting 2 (LH2) complex is a primary component of the photosynthetic unit of purple bacteria that is responsible for harvesting and relaying excitons. The electronic absorption line shape of LH2 contains two major bands at 800 nm…

生物物理 · 物理学 2026-01-05 Daniel Montemayor , Eva Rivera , Seogjoo J. Jang

Photosynthesis, the process by which energy from sunlight drives cellular metabolism, relies on a unique organization of light-harvesting and reaction center complexes. Recently, the organization of light-harvesting LH2 complexes and…

生物物理 · 物理学 2011-11-02 Elad Harel

The recently suggested possibility that weak vibronic transitions can be excitonically enhanced in light-harvesting complexes is studied in detail. A vibronic exciton dimer model which includes ground state vibrations is investigated using…

化学物理 · 物理学 2014-10-09 Jan Schulze , Magne Torbjörnsson , Oliver Kühn , Tõnu Pullerits

The electronic excitation population and coherence dynamics in the chromophores of the photosynthetic light harvesting complex 2 (LH2) B850 ring from purple bacteria (Rhodopseudomonas acidophila) have been studied theoretically at both…

化学物理 · 物理学 2012-08-29 Shu-Hao Yeh , Jing Zhu , Sabre Kais

We investigated the exciton transfer dynamics in photosynthetic light-harvesting complex 2 (LH2) coupled to an optical microcavity. Using computational simulations based on Redfield theory, we analyzed how microcavity coupling influences…

原子与分子团簇 · 物理学 2025-12-30 Ilmari Rosenkampff , Tõnu Pullerits

Chlorosomes are likely the largest and most efficient natural light-harvesting photosynthetic antenna systems. They are composed of large numbers of bacteriochlorophylls organized into supramolecular aggregates. We explore the microscopic…

化学物理 · 物理学 2012-08-28 Takatoshi Fujita , Jennifer C. Brookes , Semion K. Saikin , Alan Aspuru-Guzik

Photosynthetic organisms rely on a network of light-harvesting protein-pigment complexes to efficiently absorb sunlight and transfer excitation energy to reaction center proteins for charge separation. In photosynthetic purple bacteria,…

Aggregates of light harvesting 2 (LH2) complexes form the major exciton-relaying domain in the photosynthetic unit of purple bacteria. Application of a generalized master equation to pairs of the B850 units of LH2 complexes, where excitons…

化学物理 · 物理学 2026-01-08 Seogjoo J. Jang

In this paper we consider dynamics of a molecular system subjected to external pumping by a light source. Within a completely quantum mechanical treatment, we derive a general formula, which enables to asses effects of different light…

生物物理 · 物理学 2012-01-30 Tomas Mancal , Leonas Valkunas

In photosynthetic organisms, the energy of light during illumination is absorbed by the antenna complexes, which is transmitted by excitons and is either absorbed by the reaction centers (RCs), which have been closed in this way, or emitted…

统计力学 · 物理学 2021-05-12 Jean-Christian Anglès d'Auriac , Ferenc Iglói

Energy relaxation in light-harvesting complexes has been extensively studied by various ultrafast spectroscopic techniques, the fastest processes being in the sub-100 fs range. At the same time much slower dynamics have been observed in…

We study the role of the dimer structure of light-harvesting complex II (LH2) in excitation transfer from the LH2 (without a reaction center (RC)) to the LH1 (surrounding the RC), or from the LH2 to another LH2. The excited and un-excited…

生物物理 · 物理学 2010-06-28 S. Yang , D. Z. Xu , Z. Song , C. P. Sun

Photosynthesis relies on efficient energy relaxation within the excited-state manifold of pigment-protein complexes. Since the protein scaffold is rather flexible, the resulting energetic and structural disorder gives rise to a complex…

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