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April 23, 2026Nano Letters2 citationsOpen Access

Raman and Terahertz Spectroscopy of Low-Frequency Chiral Phonons in Amino Acids

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RRRahul RaoWCWonjin ChoiJSJoseph M. Slocik

Key Points

  • To explore the spectral signatures of chiral phonons in amino acids using Raman and terahertz spectroscopy.
  • Analyzed circularly polarized Raman optical activity (ROA) spectra of amino acid crystals.
  • Conducted terahertz circular dichroism (TCD) measurements alongside ROA data.
  • Utilized density functional theory calculations for vibrational mode assignment.
  • Identified multiple vibrational bands between 30 and 150 cm-1 in enantiomers of valine, alanine, tyrosine, and proline.
  • Observed opposite intensities of these bands in enantiomers, indicating chiral sensitivity.
  • Confirmed the assignment of modes to twisting and shearing molecular motions through computational analysis.

Abstract

Chiral phonons are mirror-symmetric vibrations with nonzero angular momenta that correspond to twisting and rotational motions of multiple atoms. In chiral crystals, these include low-energy terahertz (THz)-range vibrations of the molecular segments involving dozens of atoms with energies sensitive to molecular chirality. Here, we present spectral signatures of chiral phonons in circularly polarized Raman optical activity (ROA) spectra from enantiomers of amino acid crystals. Along with complementary THz circular dichroism (TCD) measurements, our ROA data reveal several vibrational bands in enantiomers of valine, alanine, tyrosine, and proline between 30 and 150 cm-1 (∼1-4.5 THz) that exhibit opposite intensities. Density functional theory calculations confirm their assignment to twisting and shearing molecular motions. The simultaneous registration of chiral phonon modes by ROA and TCD demonstrates the necessity of these complementary techniques to identify complex mirror-asymmetric vibrational modes and offers new insights into their interactions with circularly polarized light.

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Cite This Study

Rao et al. (2026) studied this question.

synapsesocial.com/papers/69e9b71b85696592c86eb179https://doi.org/10.1021/acs.nanolett.6c00060
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