An exact equilibrium reduced density matrix formulation I: The influence of noise, disorder, and temperature on localization in excitonic systems
arXiv:1202.4705 · doi:10.1103/PhysRevB.85.115412
Abstract
An exact method to compute the entire equilibrium reduced density matrix for systems characterized by a system-bath Hamiltonian is presented. The approach is based upon a stochastic unraveling of the influence functional that appears in the imaginary time path integral formalism of quantum statistical mechanics. This method is then applied to study the effects of thermal noise, static disorder, and temperature on the coherence length in excitonic systems. As representative examples of biased and unbiased systems, attention is focused on the well-characterized light harvesting complexes of FMO and LH2, respectively. Due to the bias, FMO is completely localized in the site basis at low temperatures, whereas LH2 is completely delocalized. In the latter, the presence of static disorder leads to a plateau in the coherence length at low temperature that becomes increasingly pronounced with increasing strength of the disorder. The introduction of noise, however, precludes this effect. In biased systems, it is shown that the environment may increase the coherence length, but only decrease that of unbiased systems. Finally it is emphasized that for typical values of the environmental parameters in light harvesting systems, the system and bath are entangled at equilibrium in the single excitation manifold. That is, the density matrix cannot be described as a product state as is often assumed, even at room temperature. The reduced density matrix of LH2 is shown to be in precise agreement with the steady state limit of previous exact quantum dynamics calculations.
37 pages, 12 figures. To appear in Phys. Rev. B
References in corpus (2)
Cited by in corpus (46)
- Perspective: Numerically "exact" approach to open quantum dynamics: The hierarchical equations of motion (HEOM)
- Non-Markovian Dynamical Maps: Numerical Processing of Open Quantum Trajectories
- Reduced hierarchical equations of motion in real and imaginary time: Correlated initial states and thermodynamic quantities
- Real-Time and Imaginary-Time Quantum Hierarchal Fokker-Planck Equations
- A hybrid stochastic hierarchy equations of motion approach to treat the low temperature dynamics of non-Markovian open quantum systems
- Coherent quantum transport in disordered systems I: The influence of dephasing on the transport properties and absorption spectra on one-dimensional systems
- Quantum simulation of photosynthetic energy transfer
- Efficient Energy Transfer in Light-Harvesting Systems, II: Quantum-Classical Comparison, Flux Network, and Robustness Analysis
- Computational Methodologies and Physical Insights into Electronic Energy Transfer in Photosynthetic Light-Harvesting Complexes
- Mechanisms of light harvesting by photosystem II in plants
- A Unified Stochastic Formulation of Dissipative Quantum Dynamics. I. Generalized Hierarchical Equations
- Forster resonance energy transfer, absorption and emission spectra in multichromophoric systems: III. Exact stochastic path integral evaluation
- Non-Canonical Statistics of a Spin-Boson Model: Theory and Exact Monte-Carlo Simulations
- Local Temperatures Out of Equilibrium
- Chebyshev Hierarchical Equations of Motion for Systems with Arbitrary Spectral Densities and Temperatures
- Higher-Order Kinetic Expansion of Quantum Dissipative Dynamics: Mapping Quantum Networks to Kinetic Networks
- Förster resonance energy transfer, absorption and emission spectra in multichromophoric systems: I. Cumulant expansions
- Stochastic Equation of Motion Approach to Fermionic Dissipative Dynamics. I. Formalism
- Partition-free approach to open quantum systems in harmonic environments: an exact stochastic Liouville equation
- Spectral and thermodynamic properties of the Holstein polaron: Hierarchical equations of motion approach
- Path Integral Molecular Dynamics for Exact Quantum Statistics of Multi-Electronic-State Systems
- Optimization of energy transport in the Fenna-Matthews-Olson complex via site-varying pigment-protein interactions
- Construction of Multi-Chromophoric Spectra from Monomer Data: Applications to Resonant Energy Transfer
- A Continued Fraction Resummation Form of Bath Relaxation Effect in the Spin-Boson Model
- How two-dimensional brick layer J-aggregates differ from linear ones: excitonic properties and line broadening mechanisms
- Path integral approach to the Wigner representation of canonical density operators for discrete systems coupled to harmonic baths
- Realization of hierarchical equations of motion from stochastic perspectives
- Artificial Light Harvesting by Dimerized Mobius Ring
- Equilibrium Coherence in the Multi-level Spin-boson Model
- Quantum simulation of clustered photosynthetic light harvesting in a superconducting quantum circuit
- Optimal efficiency of quantum transport in a disordered trimer
- Effective Modeling of Open Quantum Systems by Low-rank Discretization of Structured Environments
- Nonequilibrium steady-state picture of incoherent light-induced excitation harvesting
- Diagrammatic quantum Monte Carlo toward the calculation of transport properties in disordered semiconductors
- Accelerated sampling by infinite swapping of path integral molecular dynamics with surface hopping
- Path integral Monte Carlo with importance sampling for excitons interacting with an arbitrary phonon bath
- Temperature Controlled Open Quantum System Dynamics using Time-dependent Variational Method
- Hierarchy of equations to calculate the linear spectra of molecular aggregates - Time-dependent and frequency domain formulation
- Thermalization of open quantum systems using the multiple-Davydov-D2 variational approach
- Enhancement of coherent energy transfer by disorder and temperature in light harvesting processes
- Quantum system dynamics with a weakly nonlinear Josephson junction bath
- Coherently delocalized states in dipole interacting Rydberg ensembles: the role of internal degeneracies
- Simulation of Open Quantum Dynamics with Bootstrap-Based Long Short-Term Memory Recurrent Neural Network
- The Rigorous Stochastic Matrix Multiplication Scheme for the Calculations of Reduced Equilibrium Density Matrices of Open Multilevel Quantum Systems
- Quantum Effects in Chemical Reactions under Polaritonic Vibrational Strong Coupling
- Absence of a dissipative quantum phase transition in Josephson junctions: Theory