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Coherent resonance energy transfer dynamics of super-Ohmic environments experiencing logarithmic perturbations using full polaron transformation-based approach and its performance

机译:超强欧姆环境的相干谐振能量传递动力学,使用全极辅助变换基于综合变换的方法及其性能进行对数扰动

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Resonance energy transfer between an excited donor and a potential acceptor is a highly researched area in science. Multiple theories have been introduced in the literature to understand and simulate this energy transfer. The formulation of quantum master equation incorporating full polaron transformation approach is one of the approximation methods for simulating dynamics of the coherent resonance energy transfer. Full polaron based quantum master equation is well known for undergoing infrared divergence for Ohmic and sub-Ohmic environments where the spectral density function scales linearly or sub-linearly at low frequencies. Our objective of this paper is to study an environment where logarithmic perturbations can be experienced with a full polaron based quantum master equation and gauge its performance. In doing so, we study how a perturbation in the frequency domain affects the overall quantum coherence of the energy transfer. Our results demonstrate that for larger system bath coupling strengths, full polaron based quantum master equation is unable to provide accurate results whereas for weaker system bath coupling strengths, it performs better. Further, for a given system bath coupling strength, as logarithmic perturbations are increasing, the damping characteristics of the coherent energy transfer are also increasing. In addition, we show that smaller values of the Ohmicity parameter can suffer severe distortions even for a small logarithmic perturbation. Doing so, we show that full polaron transformation-based quantum master equation is capable of undergoing infrared divergence even for a super Ohmic environment, when higher orders logarithmic perturbations are present.
机译:激发捐赠者和潜在受体之间的共振能量转移是科学中高度研究的地区。在文献中介绍了多种理论以了解和模拟这种能量转移。包含全部偏振子变换方法的量子母部方程的制剂是模拟相干谐振能量传递动态的近似方法之一。众所周知,全极化的量子母部方程是众所周知的,用于在低频下线性或频率地缩放的欧姆和亚欧欧元环境的红外发散。我们本文的目的是研究一种环境,可以通过基于极性的量子母部方程来验收对数扰动并衡量其性能。在这样做时,我们研究频域的扰动如何影响能量转移的整体量子相干性。我们的结果表明,对于较大的系统浴耦合强度,基于极化的量子母部方程式无法提供准确的结果,而对于较弱的系统浴缸耦合强度,它表现更好。此外,对于给定的系统浴耦合强度,随着对数扰动的增加,相干能量传递的阻尼特性也在增加。此外,我们表明,即使对于小对数扰动,欧姆度参数的较小值也会遭受严重的扭曲。这样做,我们表明,即使在存在较高的订单对数扰动时,即使对于超级欧姆环境,甚至可以在存在上欧姆环境的全部辅助变换转换的量子母部方程。

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