For decades, it was considered all but impossible to perform Stark spectroscopy on molecules in a liquid solution, because their concomitant orientation to the applied electric field results in overwhelming background signals. A way out was to immobilize the solute molecules by freezing the solvent. While mitigating solute orientation, freezing removes the possibility to study molecules in liquid environments at ambient conditions. Here we demonstrate time-resolved THz Stark spectroscopy, utilizing intense single-cycle terahertz pulses as electric field source. At THz frequencies, solute molecules have no time to orient their dipole moments. Hence, dynamic Stark spectroscopy on the time scales of molecular vibrations or rotations in both non-polar and polar solvents at arbitrary temperatures is now possible. We verify THz Stark spectroscopy for two judiciously selected molecular systems and compare the results to conventional Stark spectroscopy and first principle calculations.
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http://dx.doi.org/10.1038/s41467-024-48164-w | DOI Listing |
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Department of Physiology, Touro College of Osteopathic Medicine, Middletown, USA.
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Sensory Circuits and Neurotechnology Laboratory, The Francis Crick Institute, London, United Kingdom.
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View Article and Find Full Text PDFACS Nano
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Department of Physics and Astronomy, Interdisciplinary Nanoscience Center, Aarhus University, Aarhus C 8000, Denmark.
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Department of Chemistry G. Ciamician, University of Bologna, 40126 Bologna, Italy.
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View Article and Find Full Text PDFACS Nano
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Physikalisches Institut, Karlsruhe Institute of Technology, Karlsruhe 76131, Germany.
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