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光子相关光谱学见证量子相干性。

Photon Correlation Spectroscopy as a Witness for Quantum Coherence.

机构信息

Clarendon Laboratory, University of Oxford, Parks Road, Oxford OX1 3PU, United Kingdom.

出版信息

Phys Rev Lett. 2020 May 22;124(20):203601. doi: 10.1103/PhysRevLett.124.203601.

Abstract

The development of spectroscopic techniques able to detect and verify quantum coherence is a goal of increasing importance given the rapid progress of new quantum technologies, the advances in the field of quantum thermodynamics, and the emergence of new questions in chemistry and biology regarding the possible relevance of quantum coherence in biochemical processes. Ideally, these tools should be able to detect and verify the presence of quantum coherence in both the transient dynamics and the steady state of driven-dissipative systems, such as light-harvesting complexes driven by thermal photons in natural conditions. This requirement poses a challenge for standard laser spectroscopy methods. Here, we propose photon correlation measurements as a new tool to analyze quantum dynamics in molecular aggregates in driven-dissipative situations. We show that the photon correlation statistics of the light emitted in several models of molecular aggregates can signal the presence of coherent dynamics. Deviations from the counting statistics of independent emitters constitute a direct fingerprint of quantum coherence in the steady state. Furthermore, the analysis of frequency resolved photon correlations can signal the presence of coherent dynamics even in the absence of steady state coherence, providing direct spectroscopic access to the much sought-after site energies in molecular aggregates.

摘要

发展能够探测和验证量子相干性的光谱技术是一个日益重要的目标,这是因为新的量子技术迅速发展,量子热力学领域取得进展,以及在化学和生物学中出现了关于量子相干性在生化过程中可能具有相关性的新问题。理想情况下,这些工具应该能够探测和验证在瞬态动力学和受驱动耗散系统的稳态中存在的量子相干性,例如在自然条件下由热光子驱动的光捕获复合物。这一要求对标准激光光谱方法提出了挑战。在这里,我们提出光子相关测量作为一种新的工具,用于分析驱动耗散情况下分子聚集体中的量子动力学。我们表明,在几种分子聚集体模型中发射的光的光子相关统计可以指示相干动力学的存在。与独立发射器的计数统计的偏差构成了稳态中量子相干性的直接特征。此外,频率分辨光子相关的分析甚至可以在没有稳态相干性的情况下指示相干动力学的存在,从而为分子聚集体中备受追捧的局域能提供直接的光谱学方法。

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