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  4. Standardized Electric-Field-Resolved Molecular Fingerprinting
 
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2024
Journal Article
Title

Standardized Electric-Field-Resolved Molecular Fingerprinting

Abstract
Field-resolved infrared spectroscopy (FRS) of impulsively excited molecular vibrations can surpass the sensitivity of conventional time-integrating spectroscopies, owing to a temporal separation of the molecular signal from the noisy excitation. However, the resonant response carrying the molecular signal of interest depends on both the amplitude and phase of the excitation, which can vary over time and across different instruments. To date, this has compromised the accuracy with which FRS measurements could be compared, which is a crucial factor for practical applications. Here, we utilize a data processing procedure that overcomes this shortcoming while preserving the sensitivity of FRS. We validate the approach for aqueous solutions of molecules. The employed approach is compatible with established processing and evaluation methods for the analysis of infrared spectra and can be applied to existing spectra from databases, facilitating the spread of FRS to new molecular analytical applications.
Author(s)
Huber, Marinus
Trubetskov, Michael
Schweinberger, Wolfgang
Jacob, Phillip
Zigman, Mihaela
Max Planck Institute of Quantum Optics
Krausz, F.
Max Planck Institute of Quantum Optics
Pupeza, Ioachim
Fraunhofer-Institut für Techno- und Wirtschaftsmathematik ITWM  
Journal
Analytical chemistry  
Open Access
DOI
10.1021/acs.analchem.4c01745
Additional link
Full text
Language
English
Fraunhofer-Institut für Techno- und Wirtschaftsmathematik ITWM  
Keyword(s)
  • Filtration

  • Fourier transform infrared spectroscopy

  • Infrared light

  • Infrared spectroscopy

  • Liquids

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