Quantum paraelectricity in the H-bonded ferroelectrics KH2PO4 and KD2PO4 under pressure

F F. Torresi (Instituto de Física Rosario, Universidad Nacional de Rosario and CONICET 1 , 27de Febrero 210 Bis, 2000 Rosario,) J J. Lasave (Instituto de Física Rosario, Universidad Nacional de Rosario and CONICET 1 , 27de Febrero 210 Bis, 2000 Rosario,) E E. Tosatti (SISSA 2 , via Bonomea 265, I-34136 Trieste,) J J. Kohanoff (Instituto de Fusión Nuclear “Guillermo Velarde,” Universidad Politécnica de Madrid 4 , Calle de José Gutierrez Abascal 2, 28006 Madrid,) S S. Koval (Instituto de Física Rosario, Universidad Nacional de Rosario and CONICET 1 , 27de Febrero 210 Bis, 2000 Rosario,)

Abstract

By means of path integral Monte Carlo simulations based on a coarse-grained model parameterized by first-principles calculations, we reproduce the large isotope effect observed in H-bonded KH2PO4 (KDP) and deuterated DKDP, showing that the dramatic shift in the ferroelectric critical temperature Tc upon deuteration is governed by the effective mass and local geometry of hydrogen bonds. We find clear evidence of a quantum paraelectric phase in KDP-type ferroelectrics at high pressures, characterized by a universal critical proton off-centering parameter (δc), independent of isotopic substitution. Remarkably, this universality explains the experimentally observed collapse of the isotope effect under pressure, reinforcing the essential role of geometrical effects. Our results suggest that the emergence of quantum paraelectricity and the universal linear behavior of Tc with δ across chemically diverse systems share a common microscopic origin associated with local proton delocalization within the hydrogen bond network.

Article Details

Volume / Issue Vol. 163, Issue 15
Published October 21, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (5)

F

F. Torresi

Instituto de Física Rosario, Universidad Nacional de Rosario and CONICET 1 , 27de Febrero 210 Bis, 2000 Rosario,

J

J. Lasave

Instituto de Física Rosario, Universidad Nacional de Rosario and CONICET 1 , 27de Febrero 210 Bis, 2000 Rosario,

E

E. Tosatti

SISSA 2 , via Bonomea 265, I-34136 Trieste,

J

J. Kohanoff

Instituto de Fusión Nuclear “Guillermo Velarde,” Universidad Politécnica de Madrid 4 , Calle de José Gutierrez Abascal 2, 28006 Madrid,

S

S. Koval

Instituto de Física Rosario, Universidad Nacional de Rosario and CONICET 1 , 27de Febrero 210 Bis, 2000 Rosario,