Dynamic construction of refractive index-dependent vibrations using surface plasmon-phonon polaritons
Hong Zhou,
Zhihao Ren,
Dongxiao Li,
Cheng Xu,
Xiaojing Mu () and
Chengkuo Lee ()
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Hong Zhou: National University of Singapore
Zhihao Ren: National University of Singapore
Dongxiao Li: National University of Singapore
Cheng Xu: National University of Singapore
Xiaojing Mu: Chongqing University
Chengkuo Lee: National University of Singapore
Nature Communications, 2023, vol. 14, issue 1, 1-12
Abstract:
Abstract One of the fundamental hurdles in infrared spectroscopy is the failure of molecular identification when their infrared vibrational fingerprints overlap. Refractive index (RI) is another intrinsic property of molecules associated with electronic polarizability, but with limited contribution to molecular identification in mixed environments currently. Here, we investigate the coupling mode of localized surface plasmon and surface phonon polaritons for vibrational de-overlapping. The coupling mode is sensitive to the molecular refractive index, attributed to the RI-induced vibrational variations of surface phonon polaritons (SPhP) within the Reststrahlen band, referred to as RI-dependent SPhP vibrations. The RI-dependent SPhP vibrations are linked to molecular RI features. According to the deep-learning-augmented demonstration of bond-breaking-bond-making dynamic profiling in biological reaction, we substantiate that the RI-dependent SPhP vibrations effectively disentangle overlapping vibrational modes, achieving a 92% identification accuracy even for the strongly overlapping vibrational modes in the reaction. Our findings offer insights into the realm of light-matter interaction and provide a valuable toolkit for biomedicine applications.
Date: 2023
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DOI: 10.1038/s41467-023-43127-z
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