4.7 Article

Mechanisms of the antiferro-electric ordering in superprotonic conductors Cs3H(SeO4)2 and Cs3D(SeO4)2

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 156, Issue 20, Pages -

Publisher

AIP Publishing
DOI: 10.1063/5.0088230

Keywords

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Funding

  1. JSPS KAKENHI [24651127, 15H03851, 17K05825, 20K05259, 2019A1081]
  2. Center for Computational Materials Science of IMR, Tohoku University [24651127, 15H03851, 24340071]
  3. [2020A1098]
  4. [2021B1199]
  5. [19S0203]
  6. [18S0206]
  7. Grants-in-Aid for Scientific Research [20K05259, 24651127, 15H03851, 17K05825] Funding Source: KAKEN

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The difference in antiferro-electric ordering mechanisms below 50 and 168 K in Cs3H(SeO4)(2) and Cs3D(SeO4)(2) respectively was elucidated through measuring wide ranges of absorbance spectra. The presence of deuterons at 610 cm(-1) exhibited a significant isotope effect, indicating different dominations of deuteron and proton hopping in Cs3D(SeO4)(2) and Cs3H(SeO4)(2) respectively. The distinct ordering mechanism in Cs3D(SeO4)(2) is enhanced by the phonon-assisted deuteron hopping associated with 310 cm(-1) def(bend).
Wide ranges of absorbance spectra were measured to elucidate a difference in the antiferro-electric (AF) ordering mechanisms below 50 and 168 K in Cs3H(SeO4)(2) and Cs3D(SeO4)(2), respectively. Collective excitations due to deuterons successfully observed at 610 cm(-1) exhibit a remarkable isotope effect. This indicates that the transfer state in the dimer of Cs3D(SeO4)(2) is dominated by a deuteron hopping in contrast to Cs3H(SeO4)(2), where a proton hopping makes a tiny contribution compared to a phonon-assisted proton tunneling (PAPT) associated with 440-cm(-1) def(bend) . The fluctuation relevant to the AF ordering in Cs3D(SeO4)(2) is not driven by the conventional deuteron hopping but by the phonon-assisted deuteron hopping associated with 310-cm(-1) def(bend) . Consequently, Cs3D(SeO4)(2) has a distinct ordering mechanism from Cs3H(SeO4)(2), in which quantum fluctuations toward the AF ordering are enhanced through the PAPT associated with the in-phase libration. Published under an exclusive license by AIP Publishing.

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