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Anomalous Nanoscale Optoacoustic Phonon Mixing in Nematic Mesogens

  • Dima Bolmatov
  • , Dmytro Soloviov
  • , Dmitry Zav'Yalov
  • , Lewis Sharpnack
  • , Deña M. Agra-Kooijman
  • , Satyendra Kumar
  • , Jiawei Zhang
  • , Mengkun Liu
  • , John Katsaras
  • Oak Ridge National Laboratory
  • University of Tennessee
  • Joint Institute for Nuclear Research
  • Kyiv National Taras Shevchenko University
  • Moscow Institute of Physics and Technology
  • Volgograd State Technical University
  • European Synchrotron Radiation Facility
  • Kent State University
  • SUNY Albany
  • Stony Brook University

Research output: Contribution to journalArticlepeer-review

14 Scopus citations

Abstract

Recent inelastic X-ray scattering (IXS) experiments on mesogens have revealed entirely new capabilities with regards to their nanoscale phonon-assisted heat management. Mesogens such as nematic liquid crystals (LCs) are appealing systems for study because their structure and morphology can easily be tuned. We report on Q-resolved ultra-high-resolution IXS, X-ray diffraction, and THz time-domain spectroscopy experiments combined with large-scale all-atom molecular dynamics simulations on the dynamic properties of 5CB LCs. For the first time, we observe a strong mixing of phonon excitations originating from independent in-phase and out-of-phase van-der-Waals-mediated displacement patterns. The coexistence of transverse acoustic and optical modes of 5CB LCs at near room temperature is revealed through the emergent transverse phonon gap and THz light-phonon coupling taking place within the same energy range. Furthermore, our experimental observations are supported by analysis showing correlations of spontaneous fluctuations of LCs on picosecond time scales. These findings are significant for the design of a new generation of soft molecular vibration-sensitive nanoacoustic and optomechanical applications.

Original languageEnglish
Pages (from-to)2546-2553
Number of pages8
JournalJournal of Physical Chemistry Letters
Volume9
Issue number10
DOIs
StatePublished - May 17 2018

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