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一种基于微扰电子-光子相关性的线性振动-极化子红外光谱的量子化学方法。

A Quantum Chemistry Approach to Linear Vibro-Polaritonic Infrared Spectra with Perturbative Electron-Photon Correlation.

作者信息

Fischer Eric W, Syska Jan A, Saalfrank Peter

机构信息

Institut für Chemie, Humboldt-Universität zu Berlin, Brook-Taylor-Straße 2, D-12489 Berlin, Germany.

Institut für Chemie, Universität Potsdam, Karl-Liebknecht-Straße 24-25, D-14476 Potsdam-Golm, Germany.

出版信息

J Phys Chem Lett. 2024 Feb 29;15(8):2262-2269. doi: 10.1021/acs.jpclett.4c00105. Epub 2024 Feb 21.

Abstract

In the vibrational strong coupling (VSC) regime, molecular vibrations and resonant low-frequency cavity modes form light-matter hybrid states, vibrational polaritons, with characteristic infrared (IR) spectroscopic signatures. Here, we introduce a molecular quantum chemistry-based computational scheme for linear IR spectra of vibrational polaritons in polyatomic molecules, which perturbatively accounts for nonresonant electron-photon interactions under VSC. Specifically, we formulate a cavity Born-Oppenheimer perturbation theory (CBO-PT) linear response approach, which provides an approximate but systematic description of such electron-photon correlation effects in VSC scenarios while relying on molecular quantum chemistry methods. We identify relevant electron-photon correlation effects at the second order of CBO-PT, which manifest as static polarizability-dependent Hessian corrections and an emerging polarizability-dependent cavity intensity component providing access to transmission spectra commonly measured in vibro-polaritonic chemistry. Illustratively, we address electron-photon correlation effects perturbatively in IR spectra of CO and Fe(CO) vibro-polaritonic models in sound agreement with nonperturbative CBO linear response theory.

摘要

在振动强耦合(VSC) regime 中,分子振动和共振低频腔模形成光与物质的混合态,即振动极化激元,具有特征红外(IR)光谱特征。在此,我们介绍一种基于分子量子化学的计算方案,用于多原子分子中振动极化激元的线性红外光谱,该方案微扰地考虑了VSC下的非共振电子 - 光子相互作用。具体而言,我们制定了一种腔玻恩 - 奥本海默微扰理论(CBO - PT)线性响应方法,该方法在依赖分子量子化学方法的同时,对VSC情形下的此类电子 - 光子相关效应提供了近似但系统的描述。我们在CBO - PT的二阶中识别出相关的电子 - 光子相关效应,其表现为依赖静态极化率的海森矩阵修正以及一个新出现的依赖极化率的腔强度分量,从而能够获取在振动极化激元化学中通常测量的透射光谱。举例来说,我们在CO和Fe(CO)振动极化激元模型的红外光谱中微扰地处理电子 - 光子相关效应,与非微扰的CBO线性响应理论完全一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81a5/10910601/46b08c0109ed/jz4c00105_0004.jpg

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