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Partial secular Bloch-Redfield master equation for incoherent excitation of multilevel quantum systems

机译:多能级量子系统非相干激发的局部世俗Bloch-Redfield主方程

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We present an efficient theoretical method for calculating the time evolution of the density matrix of a multilevel quantum system weakly interacting with incoherent light. The method combines the Bloch-Redfield theory with a partial secular approximation for one-photon coherences, resulting in a master equation that explicitly exposes the reliance on transition rates and the angles between transition dipole moments in the energy basis. The partial secular Bloch-Redfield master equation allows an unambiguous distinction between the regimes of quantum coherent vs. incoherent energy transfer under incoherent light illumination. The fully incoherent regime is characterized by orthogonal transition dipole moments in the energy basis, leading to a dynamical evolution governed by a coherence-free Pauli-type master equation. The coherent regime requires non-orthogonal transition dipole moments in the energy basis and leads to the generation of noise-induced quantum coherences and population-to-coherence couplings. As a first application, we consider the dynamics of excited state coherences arising under incoherent light excitation from a single ground state and observe population-to-coherence transfer and the formation of non-equilibrium quasisteady states in the regime of small excited state splitting. Analytical expressions derived earlier for the V-type system [T. V. Tscherbul and P. Brumer, Phys. Rev. Lett. 113, 113601 (2014)] are found to provide a nearly quantitative description of multilevel excited-state populations and coherences in both the small-and large-molecule limits. (C) 2015 AIP Publishing LLC.
机译:我们提出了一种有效的理论方法,用于计算与非相干光弱相互作用的多级量子系统的密度矩阵的时间演化。该方法将Bloch-Redfield理论与单光子相干的部分世俗近似相结合,产生了一个主方程,该主方程明确暴露了对跃迁速率的依赖以及跃迁偶极矩在能量基础上的角度。局部世俗的Bloch-Redfield主方程可在非相干光照射下对量子相干与不相干能量转移的状态进行明确区分。完全非相干状态的特征在于能量基础上的正交跃迁偶极矩,从而导致由无相干Pauli型主方程控制的动力学演化。相干态在能量基础上需要非正交的跃迁偶极矩,并导致产生由噪声引起的量子相干和种群-相干耦合。作为第一个应用,我们考虑了在来自单个基态的非相干光激发下产生的激发态相干动力学,并观察了在小激发态分裂状态下的种群间相干转移以及非平衡拟稳态的形成。早先为V型系统得出的解析表达式[T. V. Tscherbul和P. Brumer,物理学。牧师113,113601(2014)]被发现提供了对多级激发态总体和小分子和大分子极限的相干性的几乎定量描述。 (C)2015 AIP Publishing LLC。

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