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March 12, 2026Vacuum and Surface Science0 citationsOpen Access

Floquet Engineering of Molecular Crystals via Vibrational Excitation with Mid-Infrared Pulses

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TMTatsuya MiyamotoHOHiroshi Okamoto

Key Points

  • The central aim is to explore Floquet engineering in molecular Mott insulators using vibrational excitation.
  • Investigated the coupling between intramolecular vibrations and electronic states in K-TCNQ.
  • Used mid-infrared pulses to excite specific vibrational modes.
  • Analyzed the effects on spin-density and electronic phases.
  • Induced periodic spin-density modulation through intermolecular charge transfer.
  • Hybridization of nonmagnetic states with original spin singlet states observed.
  • Destabilization of the spin-Peierls phase was demonstrated.

Abstract

We demonstrate a new approach to a Floquet engineering in a molecular Mott insulator by exploiting the coupling between intramolecular vibrations and electronic states. In the spin-Peierls phase of K-TCNQ, mid-infrared excitation of an ag vibrational mode induces periodic spin-density modulation through intermolecular charge transfer. This modulation hybridizes nonmagnetic states with the original spin singlet states, destabilizing the spin-Peierls phase. Our approach opens a new pathway for next-generation optical control of electronic phases.

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Cite This Study

Miyamoto et al. (2026) studied this question.

synapsesocial.com/papers/69b25abe96eeacc4fcec8b89https://doi.org/10.1380/vss.69.141
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